Добірка наукової літератури з теми "Beclin1-ATG14L"

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Статті в журналах з теми "Beclin1-ATG14L"

1

Ma, Benyu, Weipeng Cao, Wenxia Li, Chan Gao, Zhen Qi, Yan Zhao, Jun Du, et al. "Dapper1 promotes autophagy by enhancing the Beclin1-Vps34-Atg14L complex formation." Cell Research 24, no. 8 (July 1, 2014): 912–24. http://dx.doi.org/10.1038/cr.2014.84.

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2

Liu, Baocai, Yinliang Lu, Tingting Zhang, Xinyue Yu, Qian Wang, Yunbo Chi, Shunzi Jin, and Guanghui Cheng. "CMTM7 as a novel molecule of ATG14L-Beclin1-VPS34 complex enhances autophagy by Rab5 to regulate tumorigenicity." Cell Communication and Signaling 19, no. 1 (July 19, 2021). http://dx.doi.org/10.1186/s12964-021-00720-3.

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Abstract Background CMTM7 is a tumor suppressor that positively regulates EGFR degradation by promoting Rab5 activation, and plays a vital role in tumor progression. Rab5 forms complexes with Beclin1 and VPS34, and acts in the early stage of autophagy. However, the affects of CMTM7 on autophagy and its mechanism are still unclear. Methods The effect of CMTM7 on autophagy induction was confirmed by western blotting, confocal microscopy and transmission electron microscopy. Co-immunoprecipitation was used to analyse the interaction of CMTM7 with autophagy initiation complex and Rab5. The xenograft model in nude mice was used to elucidate the function of CMTM7 in tumorigenicity and autophagy in vivo. Results In this study, we first demonstrated that CMTM7 facilitated the initiation of autophagosome formation, which consequently promoted the subsequent multistage process of autophagic flux, i.e. from autophagosome assembly till autolysosome formation and degradation. Confocal and co-immunoprecipitation showed that CMTM7 interacted with Rab5, VPS34, Beclin1, and ATG14L, but not with ULK1, UVRAG and LC3B. CMTM7 also increased the activity of ATG14L-linked VPS34 complex and its association with Rab5. Both in vitro and in vivo experiments demonstrated that knockdown of CMTM7 enhanced tumor growth by impairing autophagy. Conclusion These findings highlighted the role of CMTM7 in the regulation of autophagy and tumorigenicity, revealing it as a novel molecule that is associated with the interaction of Rab5 and ATG14L-Beclin1-VPS34 complex.
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3

Ohashi, Yohei, Shirley Tremel, Glenn Robert Masson, Lauren McGinney, Jerome Boulanger, Ksenia Rostislavleva, Christopher M. Johnson, Izabella Niewczas, Jonathan Clark, and Roger L. Williams. "Membrane characteristics tune activities of endosomal and autophagic human VPS34 complexes." eLife 9 (June 30, 2020). http://dx.doi.org/10.7554/elife.58281.

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The lipid kinase VPS34 orchestrates diverse processes, including autophagy, endocytic sorting, phagocytosis, anabolic responses and cell division. VPS34 forms various complexes that help adapt it to specific pathways, with complexes I and II being the most prominent ones. We found that physicochemical properties of membranes strongly modulate VPS34 activity. Greater unsaturation of both substrate and non-substrate lipids, negative charge and curvature activate VPS34 complexes, adapting them to their cellular compartments. Hydrogen/deuterium exchange mass spectrometry (HDX-MS) of complexes I and II on membranes elucidated structural determinants that enable them to bind membranes. Among these are the Barkor/ATG14L autophagosome targeting sequence (BATS), which makes autophagy-specific complex I more active than the endocytic complex II, and the Beclin1 BARA domain. Interestingly, even though Beclin1 BARA is common to both complexes, its membrane-interacting loops are critical for complex II, but have only a minor role for complex I.
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4

Li, Yanna, Mingcui Qu, Fei Xing, Huixin Li, Dan Cheng, Na Xing, and Wei Zhang. "The Protective Mechanism of Dexmedetomidine in Regulating Atg14L-Beclin1-Vps34 Complex Against Myocardial Ischemia-Reperfusion Injury." Journal of Cardiovascular Translational Research, April 29, 2021. http://dx.doi.org/10.1007/s12265-021-10125-9.

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5

Li, Xiaohua, Liqiang He, Ka Hing Che, Sarah F. Funderburk, Lifeng Pan, Nina Pan, Mingjie Zhang, Zhenyu Yue, and Yanxiang Zhao. "Imperfect interface of Beclin1 coiled-coil domain regulates homodimer and heterodimer formation with Atg14L and UVRAG." Nature Communications 3, no. 1 (January 2012). http://dx.doi.org/10.1038/ncomms1648.

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