Ume6 transcription factor is part of a signaling cascade that regulates autophagy

被引:92
作者
Bartholomew, Clinton R. [1 ]
Suzuki, Tsukasa [1 ]
Du, Zhou [1 ]
Backues, Steven K. [1 ]
Jin, Meiyan [1 ]
Lynch-Day, Melinda A. [1 ]
Umekawa, Midori [1 ]
Kamath, Avani [1 ]
Zhao, Mantong [1 ]
Xie, Zhiping [1 ]
Inoki, Ken [1 ]
Klionsky, Daniel J. [1 ]
机构
[1] Univ Michigan, Inst Life Sci, Ann Arbor, MI 48109 USA
基金
美国国家卫生研究院; 日本学术振兴会;
关键词
lysosome; membrane biogenesis; phagophore; stress; vacuole; PROTEIN-KINASE; GENE; EXPRESSION; REPRESSION; PATHWAYS; MACHINERY; INDUCTION; APOPTOSIS; VACUOLE; ROLES;
D O I
10.1073/pnas.1200313109
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
070301 [无机化学]; 070403 [天体物理学]; 070507 [自然资源与国土空间规划学]; 090105 [作物生产系统与生态工程];
摘要
Autophagy has been implicated in a number of physiological processes important for human heath and disease. Autophagy involves the formation of a double-membrane cytosolic vesicle, an autophagosome. Central to the formation of the autophagosome is the ubiquitin-like protein autophagy-related (Atg) 8 (microtubule-associated protein 1 light chain 3/LC3 inmammalian cells). Following autophagy induction, Atg8 shows the greatest change in expression of any of the proteins required for autophagy. The magnitude of autophagy is, in part, controlled by the amount of Atg8; thus, controlling Atg8 protein levels is one potential mechanism for modulating autophagy activity. We have identified a negative regulator of ATG8 transcription, Ume6, which acts along with a histone deacetylase complex including Sin3 and Rpd3 to regulate Atg8 levels; deletion of any of these components leads to an increase in Atg8 and a concomitant increase in autophagic activity. A similar regulatory mechanism is present in mammalian cells, indicating that this process is highly conserved.
引用
收藏
页码:11206 / 11210
页数:5
相关论文
共 36 条
[1]
Apicidin, a histone deaceylase inhibitor, induces both apoptosis and autophagy in human oral squamous carcinoma cells [J].
Ahn, Mee-Young ;
Ahn, Sang-Gun ;
Yoon, Jung-Hoon .
ORAL ONCOLOGY, 2011, 47 (11) :1032-1038
[2]
Aparicio Oscar, 2005, Curr Protoc Mol Biol, VChapter 21, DOI 10.1002/0471142727.mb2103s69
[3]
Decitabine and Suberoylanilide Hydroxamic Acid (SAHA) Inhibit Growth of Ovarian Cancer Cell Lines and Xenografts While Inducing Expression of Imprinted Tumor Suppressor Genes, Apoptosis, G2/M Arrest, and Autophagy [J].
Chen, Min-Yu ;
Liao, Warren S. -L. ;
Lu, Zhen ;
Bornmann, William G. ;
Hennessey, Violeta ;
Washington, Michele N. ;
Rosner, Gary L. ;
Yu, Yinhua ;
Ahmed, Ahmed Ashour ;
Bast, Robert C., Jr. .
CANCER, 2011, 117 (19) :4424-4438
[4]
The itinerary of a vesicle component, Aut7p/Cvt5p, terminates in the yeast vacuole via the autophagy/Cvt pathways [J].
Huang, WP ;
Scott, SV ;
Kim, J ;
Klionsky, DJ .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2000, 275 (08) :5845-5851
[5]
The yeast UME6 gene is required for both negative and positive transcriptional regulation of phospholipid biosynthetic gene expression [J].
Jackson, JC ;
Lopes, JM .
NUCLEIC ACIDS RESEARCH, 1996, 24 (07) :1322-1329
[6]
Repression by Ume6 involves recruitment of a complex containing Sin3 corepressor and Rpd3 histone deacetylase to target promoters [J].
Kadosh, D ;
Struhl, K .
CELL, 1997, 89 (03) :365-371
[7]
Formation process of autophagosome is traced with Apg8/Aut7p in yeast [J].
Kirisako, T ;
Baba, M ;
Ishihara, N ;
Miyazawa, K ;
Ohsumi, M ;
Yoshimori, T ;
Noda, T ;
Ohsumi, Y .
JOURNAL OF CELL BIOLOGY, 1999, 147 (02) :435-446
[8]
Guidelines for the use and interpretation of assays for monitoring autophagy [J].
Klionsky, Daniel J. ;
Abdalla, Fabio C. ;
Abeliovich, Hagai ;
Abraham, Robert T. ;
Acevedo-Arozena, Abraham ;
Adeli, Khosrow ;
Agholme, Lotta ;
Agnello, Maria ;
Agostinis, Patrizia ;
Aguirre-Ghiso, Julio A. ;
Ahn, Hyung Jun ;
Ait-Mohamed, Ouardia ;
Ait-Si-Ali, Slimane ;
Akematsu, Takahiko ;
Akira, Shizuo ;
Al-Younes, Hesham M. ;
Al-Zeer, Munir A. ;
Albert, Matthew L. ;
Albin, Roger L. ;
Alegre-Abarrategui, Javier ;
Aleo, Maria Francesca ;
Alirezaei, Mehrdad ;
Almasan, Alexandru ;
Almonte-Becerril, Maylin ;
Amano, Atsuo ;
Amaravadi, Ravi ;
Amarnath, Shoba ;
Amer, Amal O. ;
Andrieu-Abadie, Nathalie ;
Anantharam, Vellareddy ;
Ann, David K. ;
Anoopkumar-Dukie, Shailendra ;
Aoki, Hiroshi ;
Apostolova, Nadezda ;
Arancia, Giuseppe ;
Aris, John P. ;
Asanuma, Katsuhiko ;
Asare, Nana Y. O. ;
Ashida, Hisashi ;
Askanas, Valerie ;
Askew, David S. ;
Auberger, Patrick ;
Baba, Misuzu ;
Backues, Steven K. ;
Baehrecke, Eric H. ;
Bahr, Ben A. ;
Bai, Xue-Yuan ;
Bailly, Yannick ;
Baiocchi, Robert ;
Baldini, Giulia .
AUTOPHAGY, 2012, 8 (04) :445-544
[9]
A comprehensive glossary of autophagy-related molecules and processes (2nd edition) [J].
Klionsky, Daniel J. ;
Baehrecke, Eric H. ;
Brumell, John H. ;
Chu, Charleen T. ;
Codogno, Patrice ;
Cuervo, Ana Maria ;
Debnath, Jayanta ;
Deretic, Vojo ;
Elazar, Zvulun ;
Eskelinen, Eeva-Liisa ;
Finkbeiner, Steven ;
Fueyo-Margareto, Juan ;
Gewirtz, David ;
Jaattela, Marja ;
Kroemer, Guido ;
Levine, Beth ;
Melia, Thomas J. ;
Mizushima, Noboru ;
Rubinsztein, David C. ;
Simonsen, Anne ;
Thorburn, Andrew ;
Thumm, Michael ;
Tooze, Sharon A. .
AUTOPHAGY, 2011, 7 (11) :1273-1294
[10]
Hepatic Autophagy Is Suppressed in the Presence of Insulin Resistance and Hyperinsulinemia INHIBITION OF FoxO1-DEPENDENT EXPRESSION OF KEY AUTOPHAGY GENES BY INSULIN [J].
Liu, Hui-Yu ;
Han, Jianmin ;
Cao, Sophia Y. ;
Hong, Tao ;
Zhuo, Degen ;
Shi, Jianbo ;
Liu, Zhenqi ;
Cao, Wenhong .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2009, 284 (45) :31484-31492