-
Zhivotovsky B, Orrenius S. Calcium and cell death mechanisms: A perspective from the cell death community. Cell Calcium, 2011, 50: 211-221. I.F.=4,2
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Gogvadze, V. Targeting Mitochondria for Cancer Therapy. Current Pharmaceutical Design, 2011; 17: 4034-4046. I.F. = 4.9
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Kruspig, B., Nilchian, A., Bejarano, I., Orrenius, S., Zhivotovsky, B., and Gogvadze, V. Targeting mitochondria by α-tocopheryl succinate kills neuroblastoma cells irrespectively of MycN oncogene expression. Cell. Mol. Life Sci. 2012; 69, 2091-2099. I.F.=5.6
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Kaminskyy, V.O., Piskunova, T., Zborovskaya, I.B., Tchevkina, E.M., and Zhivotovsky, B. Suppression of basal autophagy reduces lung cancer cell proliferation and enhances caspase-dependent and –independent apoptosis by stimulating ROS formation. Autophagy, 2012; 8:7, 1-13. I.F.=12,04
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Schleich, K., Warnken, U., Fricker, N., Öztürk, S., Richter, P, Kammerer, K., Schnölzer, M., Krammer, P.H., Lavrik, I.N. Stoichiometry of the CD95 death-inducing signaling complex (DISC): Experimental and modeling evidence for a death effector domain (DED) chain model. Molecular Cell, 2012, 47, 1–14. IF-15.3
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Kulikov, A. V., Shilov, E.S., Mufazalov, I.A., Gogvadze, V., Nedospasov, S.A., and Zhivotovsky, B. Cytochrome c: the Achilles’ heel in apoptosis. Cell. Mol. Life Sci. 2012; 69, 1787-1797. I.F.=5.6
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Kruspig, B., Nilchian, A., Orrenius, S., Zhivotovsky, B., and Gogvadze, V. Citrate kills tumor cells through activation of apical caspases. Cell. Mol. Life Sci. 2012: 69, 4229-4237. I.F.=5.6
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Kruspig, B., Zhivotovsky, B., and Gogvadze, V. Contrasting effects of α-tocopheryl succinate on cisplatin- and etoposide-induced apoptosis. Mitochondrion, 2013: 13, 533-538. I.F.=4.0
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Buravkova, L.B., Rylova, Y.V., Andreeva, E.R., Kulikov, A.V., Pogodina, M.V., Zhivotovsky, B., and Gogvadze, V. Low ATP level is sufficient to maintain the uncommitted state of multipotent mesenchymal stem cells. Biochim. Biophys. Acta-GEN. 2013: 1830: 4418-4425. I.F.=3.9
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Kaminskyy, V.O., Surova, O.V., Piskunova, T., Zborovskaya, I.B., Tchevkina, E.M., Andera, L., and Zhivotovsky, B. Upregulation of c-FLIP-short in response to TRAIL promotes survival of NSCLC cells, which could be suppressed by inhibition of Ca2+/calmodulin signalling. Cell Death & Dis. 2013: 4, e522. I.F.=6.04
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Vakifahmetoglu-Norberg, H., Norberg, E., Perdomo, A.B., Olsson, M., Ciccosanti, F., Orrenius, S., Fimia, G.M., Piacentini, M., and Zhivotovsky, B. Caspase-2 promotes cytoskeleton protein degradation during apoptotic cell death. Cell Death & Dis.2013: 4, e940. I.F.=6.04
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Kulikov, A.V., Vdovin, A.S., Zhivotovsky, B., and Gogvadze, V. Targeting mitochondria by α-tocopheryl succinate overcomes hypoxia-mediated tumor cell resistance to treatment. Cell. Mol. Life Sci. 2014: 71. 2325-2333. I.F.=5.9
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Lavrik, I.N., and Zhivotovsky, B. Systems biology: a way to make complex problems more understandable. Cell Death & Dis. 2014: 5, e.1256. I.F.=5.2
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Lavrik, I.N. Systems biology of death receptor networks: live and let die. Cell Death Dis. 2014: 5, e1259. I.F.=5.2
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Viktorsson, K., Lewensohn, R., and Zhivotovsky, B. Systems biology approaches to develop innovative strategies for lung cancer therapy. Cell Death & Dis. 2014: 5, e1260. I.F.=5.2
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Kaminskyy, V. O. and Zhivotovsky, B. Free radicals in crosstalk between autophagy and apoptosis. Antioxid Redox Signal. 2014: 21, 86-102. I.F.=7.7
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Zagryazhskaya, A and Zhivotovsky, B. miRNAs in lung cancer: a link to aging. Ageing Res. Rev. 2014: 17, 54-67. I.F.=7.6
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Gogvadze. V., and Zhivotovsky, B. Mitochondria - a bullseye in cancer therapy. Mitochondrion. 2014: 19, 1-2. I.F.=3.5
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Kruspig, B., Zhivotovsky, B, and Gogvadze, V. Mitochondrial substrates in Cancer: Drivers or Passengers? Mitochondrion. 2014: 19, 8-19. I.F.=3.5
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Buravkova, L.B., Andreeva, E.R., Gogvadze, V. and Zhivotovsky, B. Mesenchymal stem cells and hypoxia: where are we? Mitochondrion. 2014: 19, 105-112. I.F.=3.5
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Galluzzi, L., Bravo-San Pedro, J.M., Vitale, I., Aaronson, S.A., Abrams, J.M., Adam, D., Alnemri, E.S., Altucci, L., Andrews, D., Annicchiarico-Petruzzelli, M., Baehrecke, E.H., Bazan, N.G., Bertrand, M.J., Bianchi, K., Blagosklonny, M.V., Blomgren, K., Borner. C., Bredesen, D.E., Brenner, C., Campanella, M., Candi, E., Cecconi, F., Chan, F.K., Chandel, N.S., Cheng, E.H., Chipuk. J.E., Cidlowski, J.A., Ciechanover, A., Dawson, T.M., Dawson, V.L., De Laurenzi, V., De Maria, R., Debatin, K-M., Di Daniele, N., Dixit, V.M., Dynlacht, B.D., El-Deiry, W.S., Fimia, G.M., Flavell, R.A., Fulda, S., Garrido, C., Gougeon, M.L., Green, D.R., Gronemeyer, H., Hajnoczky, G., Hardwick, J.M., Hengartner, M.O., Ichijo, H., Joseph, B., Jost, P.J., Kaufmann, T., Kepp, O., Klionsky, D.J., Knight, R.A., Kumar, S., Lemasters, J.J., Levine, B., Linkerman, A., Lipton, S.A., Lockshin, R.A., López-Otín, C., Lugli, E., Madeo, F., Malorni, W., Marine, J-C., Martin, S.J., Martinou, J-C., Medema, J.P., Meier, P., Melino, S., Mizushima, N., Moll, U., Muñoz-Pinedo, C., Nuñez, G., Oberst, A., Panaretakis, T., Penninger, J.M., Peter, M.E., Piacentini, M., Pinton, P., Prehn, J.H., Puthalakath, H., Rabinovic, G.A., Ravichandran, K.S., Rizzuto, R., Rodrigues, C.M., Rubinstein, D.C., Rudel, T., Shi, Y., Simon, H-U., Stockwell, B.R., Szabadkai, G., Tait, S.W., Tang, H.L., Tavernarakis, N., Tsujimoto, Y., Vanden Berghe, T., Vandenabeele, P., Villunger, A., Wagner, E.F., Walczak, H., White, E., Wood, W.G., Yuan, J., Zakeri, Z., Zhivotovsky, B., Melino, G., and Kroemer, G. Essential versus accessory aspects of cell death: Recommendations of the NCCD 2015. Cell Death & Differ., 2015: 22, 58-73. I.F.= 8.2.
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Zamaraev, A.V., Kopeina, G.S., Zhivotovsky, B., and Lavrik, I.N. Cell death controlling complexes and their potential therapeutic role. Cell. Mol. Life Sci. 2015: 72, 505-517. I.F.=5.7
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Gogvadze, V., Orrenius, S., and Zhivotovsky. B. Analysis of mitochondrial dysfunction during cell death. Methods Mol Biol. 2015: 1264, 385-393.
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Olsson, M., Forsberg, J., and Zhivotovsky, B. Caspase-2: the reinvented enzyme. Oncogene. 2015: 34, 1877–1882. I.F.=7.9.
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Orrenius, S., Gogvadze, V., and Zhivotovsky, B. Calcium and mitochondria in the regulation of cell death. Biochem. Biophys. Res. Communs. 2015: 460, 72-81. I.F.=2.4.
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Zagryazhskaya, A., Surova, O., Akbar, N.S., Allavena, G., Gyuraszova, K., Zborovskaya, I.B., Tchevkina, E.M. and Zhivotovsky, B. Tudor staphylococcal nuclease drives chemoresistance of non-small cell lung carcinoma cells by regulating S100A11. Oncotarget, 2015: 6, 12156-12173. I.F.=5.0.
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Zagryazhskaya, A., Gyuraszova, K., Zhivotovsky, B. Cell death in cancer therapy of lung adenocarcinoma. Int. J. Dev. Biol. 2015: 59, 119-129. I.F.=1.8.
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Prokhorova, E.A., Zamaraev, A.V., Kopeina, G.S., Zhivotovsky, B., and Lavrik, I.N. Role of the nucleus in apoptosis: signaling and execution. Cell. Mol. Life Sci. 2015: 72, 4593-4612. I.F.=5.7
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Klionsky, D., … Zhivotovsky, B., …and Zughaier, S. M. Guidelines for the use and interpretation of assays for monitoring autophagy (3rd edition). Autophagy, 2016: 12, 1-222. I.F.=9.1.
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Denisenko, T.V., Sorokina, I.V., Gogvadze, V., and Zhivotovsky, B. Mitotic catastrophe and cancer drug resistance: A link that must to be broken. Drug Resist. Updates, 2016: 24, 1-12. I.F.=7.95.
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Kruspig, B., Valter, K., Skender, B., Zhivotovsky, B., and Gogvadze, V. Targeting succinate:ubiquinone reductase potentiates the efficacy of anticancer therapy. Biochim Biophys Acta. 2016: 1863, 2065-2071. I.F.=5.13.
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Kulikov, A.V., Slobodkina, E.A., Alekseev, A.V., Gogvadze, V., and Zhivotovsky, B. Contrasting effects of cardiac glycosides on cisplatin- and etoposide-induced cell death. Biol.Chem. 2016: 397, 661-670. I.F.=2.71.
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Gogvadze, V., Orrenius, S., Zhivotovsky, B. Mitochondria – a switchboard between various cell death modalities. J. World Mitoch. Soc., 2016: 1 (2), 1-6.
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Gutierrez-Beltran, E., Denisenko, T.V., Zhivotovsky, B., Bozhkov, P.V. Tudor staphylococcal nuclease: biochemistry and functions. Cell Death & Differ., 2016: 23, 1739-1748. I.F.=8.2.
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Gladkovskaya, O., Gun’ko, Y.K., O’Connor, G.M., Gogvadze, V., and Rochev, Y. In one harness: the interplay of cellular responses and subsequent cell fate after quantum dot uptake. Nanomedicine, 2016: 11, 2603-2615. I.F.=4.9.
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Allavena, G., Boyd, C, Oo, K.S., Maellaro, E., Zhivotovsky, B., and Kaminskyy, V.O. Suppressed translation and ULK1 degradation as potential mechanisms of autophagy limitation under prolonged starvation. Autophagy, 2016: 12, 2085-2097. I.F.=9.1.
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Sorokina, I.V., Denisenko, T.V., Imreh, G., Gogvadze, V., and Zhivotovsky, B. Reactive oxygen species regulate a balance between mitotic catastrophe and apoptosis. Int. J. Bioch. Cell Biol., 2016: 81, 133–136. I.F.=4.17.
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Kopeina, G.S., Senichkin, V.V., and Zhivotovsky, B. Caloric restriction - a promising anti-cancer approach: From molecular mechanisms to clinical trials. Biochim Biophys Acta. 2017: 1867, 29-41. I.F.=7.94.
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Valter, K., Chen, L., Kruspig, B., Maximchik, P., Cui, H., Zhivotovsky, B., and Gogvadze, V. Contrasting effects of glutamine deprivation on apoptosis induced by conventionally used anticancer drugs. Biochim Biophys Acta. 2017: 1864, 498-506. I.F.=5.13.
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Kulikov, A.V., Luchkina, E.A., Gogvadze, V., and Zhivotovsky, B. Mitophagy: link to cancer development and therapy. Biochem. Biophys. Res. Commun. 2017: 482, 432-439. I.F.=2.4.
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Zamaraev, A.V., Kopeina, G.S., Prokhorova, E.A., Zhivotovsky, B., and Lavrik, I.N. Post-translational modification of caspases: the other side of apoptosis regulation. Trends Cell Biol. 2017: 27, 322-339. I.F.=15.3.
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Wiman, K.G., and Zhivotovsky, B. Introduction to Nobel Conference: ”The Cell Cycle and Cell Death in Disease”. J. Intern. Med. 2017: 281, 418-421. I.F.=7.98.
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Wiman, K.G., and Zhivotovsky, B. Understanding cell cycle and cell death regulation provides novel weapons against human diseases. J. Intern. Med. 2017:281, 482-495. I.F.=7.98.
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Forsberg, J., Zhivotovsky, B., and Olsson, M. Caspase-2 – an orphan enzyme out of the shadows. Oncogene, 2017: 36, 5441-5444. I.F.=7.5.
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Sorokina, I.V., Denisenko, T.V., Imreh, G., Tyurin-Kuzmin, P.A., Kaminskyy, V.O., Gogvadze, V., and Zhivotovsky, B. Involvement of autophagy in the outcome of mitotic catastrophe. Sci. Rep. 2017: 7, 14571. I.F.=4.3.
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Nedopekina, D.A., Gubaidullin, R.R., Odinokov, V.N., Maximchik, P.V., Zhivotovsky, B., Bel’skii, Y.P., Khazanov, V.A., Manuylova, A.V., Gogvadze, V., and Spivak, A.Yu. Mitochondria-targeted betulinic and ursolic acids derivatives: synthesis and anticancer activity. MedChemComm, 2017: 8, 1934-1945. I.F.=2.6.
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Senichkin, V.V., Kopeina, G.S., Prokhorova, E.A., Zamaraev, A.V., Lavrik, I.N., and Zhivotovsky, B. Modulation of Mcl-1 transcription by serum deprivation sensitizes cancer cells to cisplatin. Biochim Biophys Acta, 2018: 1862, 557–566. I.F.=5.08.
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Forsberg, J., Li, X., Akpinar, B., Salvatori, R., Ott, M., Zhivotovsky, B., and Olsson, M. A caspase-2-RFXANK interaction and its implication for MHC class II expression. Cell Death & Dis. 2018; 9, 80. I.F.=5.9.
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Glukhova XA, Trizna JA, Proussakova OV, Gogvadze V, Beletsky IP. Impairment of Fas-ligand-caveolin-1 interaction inhibits Fas-ligand translocation to rafts and Fas-ligand-induced cell death. Cell Death Dis. 2018; 9: 73. I.F.=5.9.
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Kaminskyy, V.O., and Zhivotovsky, B. Cell death-based treatment of various diseases: a fifty-year journey. Cell Death & Dis. 2018: 9, 110. I.F.=5.9.
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Valter, K., Zhivotovsky, B., and Gogvadze, V. Cell death-based treatment of neuroblastoma. Cell Death & Dis., 2018: 9, 113. I.F.=5.9.
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Denisenko, T.V., Budkevich, I.N. and Zhivotovsky, B. Cell death-based treatment of lung adenocarcinoma. Cell Death & Dis., 2018: 9, 117. I.F.=5.9.
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Allavena, G., Cuomo, F., Baumgartner, G., Bele, T., Yarar Sellgren, A., Soe Oo, K., Johnson, K., Gogvadze, V., Zhivotovsky, B., and Kaminskyy, VO. Suppressed translation as a mechanism of initiation of caspase-8-dependent apoptosis in autophagy-deficient NSCLC cells under nutrient limitation. Autophagy, 2018: 14, 252-268. I.F.=11.1.
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Galluzzi, L., Vitale, I., Aaronson, S.A., Abrams, J.M., Adam, D., Agostinis, P., Alnemri, E.S., Altucci, L., Amelio, I., Andrews, D.W., Annicchiarico-Petruzzelli, M., Antonov, A.V., Arama, E., Baehrecke, E.H., Barlev, N.A., Bazan, N.G., Bernassola, F., Bertrand, M.J.M., Bianchi, K., Blagosklonny, M.V., Blomgren, K., Borner, C., Boya, P., Brenner, C., Campanella, M., Candi, E., Carmona-Gutierrez, D., Cecconi, F., Chan, F.K., Chandel, N.S., Cheng, E.H., Chipuk, J.E., Cidlowski, J.A., Ciechanover, A., Cohen, G.M., Conrad, M., Cubillos-Ruiz, J.R., Czabotar, P.E., D'Angiolella, V., Dawson, T.M., Dawson, V.L., De Laurenzi, V., De Maria, R., Debatin, K.M., DeBerardinis, R.J., Deshmukh, M., Di Daniele, N., Di Virgilio, F., Dixit, V.M., Dixon, S.J., Duckett, C.S., Dynlacht, B.D., El-Deiry, W.S., Elrod, J.W., Fimia, G.M., Fulda, S., García-Sáez, A.J., Garg, A.D., Garrido, C., Gavathiotis, E., Golstein, P., Gottlieb, E., Green, D.R., Greene, L.A., Gronemeyer, H., Gross, A., Hajnoczky, G., Hardwick, J.M., Harris, I.S., Hengartner, M.O., Hetz, C., Ichijo, H., Jäättelä, M., Joseph, B., Jost, P.J., Juin, P.P., Kaiser, W.J., Karin, M., Kaufmann, T., Kepp, O., Kimchi, A., Kitsis, R.N., Klionsky, D.J., Knight, R.A., Kumar, S., Lee, S.W., Lemasters, J.J., Levine, B., Linkermann, A., Lipton, S.A., Lockshin, R.A., López-Otín, C., Lowe, S.W., Luedde, T., Lugli, E., MacFarlane, M., Madeo, F., Malewicz, M., Malorni, W., Manic, G., Marine, J.C., Martin, S.J., Martinou, J.C., Medema, J.P., Mehlen, P., Meier, P., Melino, S., Miao, E.A., Molkentin, J.D., Moll, U.M., Muñoz-Pinedo, C., Nagata, S., Nuñez, G., Oberst, A., Oren, M., Overholtzer, M., Pagano, M., Panaretakis, T., Pasparakis, M., Penninger, J.M., Pereira, D.M., Pervaiz, S., Peter, M.E., Piacentini, M., Pinton, P., Prehn, J.H.M., Puthalakath, H., Rabinovich, G.A., Rehm, M., Rizzuto, R., Rodrigues, C.M.P., Rubinsztein, D.C., Rudel, T., Ryan, K.M., Sayan, E., Scorrano, L., Shao, F., Shi, Y., Silke, J., Simon, H.U., Sistigu, A., Stockwell, B.R., Strasser, A., Szabadkai, G., Tait, S.W.G., Tang, D., Tavernarakis, N., Thorburn, A., Tsujimoto, Y., Turk, B., Vanden Berghe, T., Vandenabeele, P., Vander Heiden, M.G., Villunger, A., Virgin, H.W., Vousden, K.H., Vucic, D., Wagner, E.F., Walczak, H., Wallach, D., Wang, Y., Wells, J.A., Wood, W., Yuan, J., Zakeri, Z., Zhivotovsky, B., Zitvogel, L., Melino, G., Kroemer, G. Molecular mechanisms of cell death: recommendations of the Nomenclature Committee on Cell Death 2018. Cell Death Differ. 2018: 25, 486-541. I.F.=8.33
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Forsberg, J., Li, X., Zamaraev, A., Panaretakis, T., Zhivotovsky, B., and Olsson, M. Caspase-2 associates with FAN through direct interaction and overlapping functionality. Biochem. Biophys. Res. Commun. 2018: 499, 822-828. I.F.=2.5
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Denisenko, T.V., Pivnyuk, A.D., and Zhivotovsky, B. p53-autophagy-metastasis link. Cancers, 2018: 10, 148. I.F.=5.02
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Zamaraev, A.V., Kopeina, G.S., Buchbinder, J.H., Zhivotovsky, B., and Lavrik, I.N. Caspase-2 is a negative regulator of necroptosis. Int. J. Bioch. Cell Biol. 2018: 102, 101-108. I.F.= 3.34.
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Prokhorova. E.A., Kopeina, G.S., Lavrik, I.N., and Zhivotovsky, B. Apoptosis regulation by subcellular relocation of caspases. Sci. Rept. 2018: 8, 12199. I.F.=4.12.
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Kopeina, G.S., Prokhorova, E.A., Lavrik, I.N., and Zhivotovsky, B. Alterations in the nucleocytoplasmic transport in apoptosis: caspases lead the way. Cell Prolifer. 2018: 51, e12467. I.F.=4.9.
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Maximchik, P., Abdrakhmanov, A., Inozemtseva, E., Tyurin-Kuzmin, P.A., Zhivotovsky, B., and Gogvadze, V. 2-Deoxyglucose has distinct and cell line-specific effects on the survival of different cancer cells upon antitumor drug treatment. FEBS J., 2018: 285, 4590–4601. I.F.=4,53
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Abdrakhmanov, A., Kulikov, A.V., Luchkina, E.A., Zhivotovsky, B., and Gogvadze, V. Involvement of mitophagy in cisplatin-induced cell death regulation. Biol. Chem. 2019: 400, 161–170. I.F.=3.3.
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Senichkin, V.V., Streletskaia, А.Y., Zhivotovsky, B., and Kopeina, G.S. Molecular comprehension of Mcl-1: from gene structure to cancer therapy. Trends Cell Biol. 2019: 29, 549-562. I.F.=18,56
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Bazanov, D.R., Pervushin, N.V., Savitskaya, V.Y., Anikina, L.V., Proskurnina, M.V., Lozinskaya, N, A., Kopeina, G,S. 2,4,5-Tris(alkoxyaryl)imidazoline derivatives as potent scaffold for novel p53-MDM2 interaction inhibitors: Design, synthesis, and biological evaluation. Bioorg Med Chem Lett. 2019;29, 2364-2368. I.F.=2,5.
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Maximchik, P., Tamarov, K., Sheval, E., Tolstik, E., Kirchberger-Tolstik, T., Yang, Z., Sivakov, V., Zhivotovsky, B., Osminkina, L. Biodegradable porous silicon nanocontainers as an effective drug carrier for regulation of the tumor cell death pathways. ACS Biomaterials Science & Engineering. 2019: 5, 11, 6063-6071. I.F.=4.5
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Denisenko, T.V., Gorbunova, A.S., and Zhivotovsky, B. Mitochondrial involvement in migration, invasion and metastasis. Frontiers Cell Dev. Biol. 2019: 7, 355. I.F.= 5.2.
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Prokhorova, E.A., Egorshina, A. Yu,. Zhivotovsky, B., Kopeina, G.S. The DNA-damage response and nuclear events as regulators of non-apoptotic forms of cell death. Oncogene. 2020: 39, 1-16. I.F.=6.63
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Senichkin, V.V., Streletskaia, A.Y., Gorbunova, A.S., Zhivotovsky, B., Kopeina, G.S. Saga of Mcl-1: regulation from transcription to degradation. Cell Death Differ. 2020: 27, 405–419. I.F.=8,09.
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Bikmulina, P.Y., Kosheleva, N.V., Shpichka, A.I., Timashev, P.S., Yusupov, V.I., Maximchik, P.V., Gogvadze, V.G., Rochev, Yu.A. Photobiomodulation enhances mitochondrial respiration in an in vitro rotenone model of Parkinson’s disease. Opt. Eng. 2020: 59(6), 061620. I.F.=1.2.
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Minina, E.A., Staal, J., Alvarez, V.E., Berges, J.A., Berman-Frank, I., Beyaert, R., Bidle, K.D., Bornancin, F., Casanova, M., Cazzulo, J.J., Choi, C.J., Coll, N.S., Dixit, V.M., Dolinar, M., Fasel, N., Funk, C., Gallois, P., Gevaert, K., Gutierrez-Beltran, E., Hailfinger, S., Klemenčič, M., Koonin, E.V., Krappmann, D., Linusson, A., Machado, M.F.M., Madeo, F., Megeney, L.A., Moschou, P.N., Mottram, J.C., Nyström, T., Osiewacz, H.D., Overall, C.M., Pandey, K.C., Ruland, J., Salvesen, G.S., Shi, Y., Smertenko, A., Stael, S., Ståhlberg, J., Suárez, M.F., Thome, M., Tuominen, H., Van Breusegem, F., van der Hoorn, R.A.L., Vardi, A., Zhivotovsky, B., Lam, E., Bozhkov, P.V. Classification and nomenclature of metacaspases and paracaspases: No more confusion with caspases. Mol Cell. 2020: 77, 927-929. I.F.=14,55
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Abdrakhmanov, A., Gogvadze, V., and Zhivotovsky, B. To eat or to die: deciphering selective forms of autophagy. Trends Biochem. Sci. 2020: 45, 347-364. I.F.=16.9
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Smolina, N., Khudiakov, A., Knyazeva, A., Zlotina, A., Sukhareva, K., Kondratov, K., Gogvadze, V., Zhivotovsky, B., Sejersen, T., Kostareva, A. Desmin mutations result in mitochondrial dysfunction regardless of their aggregation properties. Biochim Biophys Acta Mol Basis Dis. 2020: 1866, 165745. I.F.=4,33.
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Murugina, N.E., Budikhina, A.S., Dagil, Y.A., Maximchik, P.V., Balyasova, L.S., Murugin, V.V., Melnikov, M.V., Sharova, V.S., Nikolaeva, A.M., Chkadua, G.Z., Pinegin, B.V., Pashenkov, M.V. Glycolytic reprogramming of macrophages activated by NOD1 and TLR4 agonists: No association with proinflammatory cytokine production in normoxia. J Biol Chem. 2020: 295, 3099-3114. I.F.=4.1
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Glukhova, X.A., Trizna, J.A., Proussakova, O.V., Gogvadze, V.G., Beletsky, I.P. Dephosphorylation of Fas-ligand and caveolin-1 is a prerequisite step in Fas-ligand - caveolin-1 complex formation and cell death stimulation. Cell Signal. 2020: 70, 109590. I.F.=3.39.
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Pervushin, N.V., Senichkin, V.V., Zhivotovsky, B., Kopeina, G.S. Mcl-1 as a “barrier” in cancer treatment: can we target it now? Intern. Rev. Cell Mol. Biol. 2020: 351, 23-55. I.F.=3.8.
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Valter, K., Maximchik, P., Abdrakhmanov, A., Senichkin, V., Zhivotovsky, B., and Gogvadze, V. Distinct effects of etoposide on glutamine-addicted neuroblastoma. Cell. Mol. Life Sci. 2020: 77, 1197-1207. I.F.=7.01.
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Ravel, J.M., Monraz Gomez, L. C., Sompairac, N., Calzone, L., Zhivotovsky, B., Kroemer, G., Barillot, E., Zinovyev, A., Kuperstein, I. Comprehensive map of the regulated cell death signaling network: A powerful analytical tool for studying diseases. Cancers, 2020: 12, 990. I.F.=6,2.
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Zhivotovsky, B., Davies, KJA. ‘In Memoriam’ Sten Orrenius (1937-2020). FRBM, 2020: 155, iii-iv. I.F.=6,17.
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Zhivotovsky, B., Nicotera, P. On Sten Orrenius (1937-2020). Cell Death Differ. 2020: 27, 2744–2745. I.F.=10,7.
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Fadeel. B., Zhivotovsky, B. In memoriam: Sten Orrenius (1937-2020). Biochem Biophys Res Commun. 2020: 529, 882-883. I.F.=2,99
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2. Представление лаборатории на фестивале НАУКА+. 14.10.2020 г.