Identification of modulators of autophagic flux in an image-based high content siRNA screen

被引:55
作者
Hale, Christopher M. [1 ]
Cheng, Qingwen [2 ]
Ortuno, Danny [2 ]
Huang, Ming [2 ]
Nojima, Dana [1 ]
Kassner, Paul D. [3 ]
Wang, Songli [3 ]
Ollmann, Michael M. [3 ]
Carlisle, Holly J. [2 ]
机构
[1] Amgen Inc, Discovery Technol, Thousand Oaks, CA 91320 USA
[2] Amgen Inc, Dept Neurosci Res, Thousand Oaks, CA 91320 USA
[3] Amgen Inc, Genome Anal Unit, Thousand Oaks, CA 91320 USA
关键词
Autophagy; CK1; alpha; CSNK1A1; MTOR; p62; pulse-chase; RNAi; siRNA screen; SQSTM1;
D O I
10.1080/15548627.2016.1147669
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
Autophagy is the primary process for recycling cellular constituents through lysosomal degradation. In addition to nonselective autophagic engulfment of cytoplasm, autophagosomes can recognize specific cargo by interacting with ubiquitin-binding autophagy receptors such as SQSTM1/p62 (sequestosome 1). This selective form of autophagy is important for degrading aggregation-prone proteins prominent in many neurodegenerative diseases. We carried out a high content image-based siRNA screen (4 to 8 siRNA per gene) for modulators of autophagic flux by monitoring fluorescence of GFP-SQSTM1 as well as colocalization of GFP-SQSTM1 with LAMP2 (lysosomal-associated membrane protein 2)-positive lysosomal vesicles. GFP-SQSTM1 and LAMP2 phenotypes of primary screen hits were confirmed in 2 cell types and profiled with image-based viability and MTOR signaling assays. Common seed analysis guided siRNA selection for these assays to reduce bias toward off-target effects. Confirmed hits were further validated in a live-cell assay to monitor fusion of autophagosomes with lysosomes. Knockdown of 10 targets resulted in phenotypic profiles across multiple assays that were consistent with upregulation of autophagic flux. These hits include modulators of transcription, lysine acetylation, and ubiquitination. Two targets, KAT8 (K[lysine] acetyltransferase 8) and CSNK1A1 (casein kinase 1, 1), have been implicated in autophagic regulatory feedback loops. We confirmed that CSNK1A1 knockout (KO) cell lines have accelerated turnover of long-lived proteins labeled with C-14-leucine in a pulse-chase assay as additional validation of our screening assays. Data from this comprehensive autophagy screen point toward novel regulatory pathways that might yield new therapeutic targets for neurodegeneration.
引用
收藏
页码:713 / 726
页数:14
相关论文
共 40 条
[1]  
Bjorkoy G., Lamark T., Brech A., Outzen H., Perander M., Overvatn A., Stenmark H., Johansen T., p62/SQSTM1 forms protein aggregates degraded by autophagy and has a protective effect on huntingtin-induced cell death, J Cell Biol, 171, pp. 603-614, (2005)
[2]  
Komatsu M., Waguri S., Chiba T., Murata S., Iwata J., Tanida I., Ueno T., Koike M., Uchiyama Y., Kominami E., Loss of autophagy in the central nervous system causes neurodegeneration in mice, Nature, 441, pp. 880-884, (2006)
[3]  
Rubinsztein D.C., Codogno P., Levine B., Autophagy modulation as a potential therapeutic target for diverse diseases, Nat Rev Drug Discov, 11, pp. 709-730, (2012)
[4]  
Cuervo A.M., Autophagy: Many paths to the same end, Mol Cell Biochem, 263, pp. 55-72, (2004)
[5]  
Pankiv S., Clausen T.H., Lamark T., Brech A., Bruun J.-A., Outzen H., Overvatn A., Bjorkoy G., Johansen T., p62/SQSTM1 binds directly to Atg8/LC3 to facilitate degradation of ubiquitinated protein aggregates by autophagy, J Biol Chem, 282, pp. 24131-24145, (2007)
[6]  
Larsen K.B., Lamark T., Overvatn A., Harneshaug I., Johansen T., Bjorkoy G., A reporter cell system to monitor autophagy based on p62/SQSTM1, Autophagy, 6, pp. 784-793, (2010)
[7]  
Yang Z., Klionsky D.J., Mammalian autophagy: Core molecular machinery and signaling regulation, Curr Opin Cell Biol, 22, pp. 124-131, (2010)
[8]  
Apsel B., Blair J.A., Gonzalez B., Nazif T.M., Feldman M.E., Aizenstein B., Hoffman R., Williams R.L., Shokat K.M., Knight Z.A., Targeted polypharmacology: discovery of dual inhibitors of tyrosine and phosphoinositide kinases, Nat Chem Biol, 4, pp. 691-699, (2008)
[9]  
Phadwal K., Alegre-Abarrategui J., Watson A.S., Pike L., Anbalagan S., Hammond E.M., Wade-Martins R., McMichael A., Klenerman P., Simon A.K., A novel method for autophagy detection in primary cells, Autophagy, 8, pp. 677-689, (2012)
[10]  
Manders E.M.M., Verbeek F.J., Ate J.A., Measurement of co-localisation of objects in dual-colour confocal images, J Microsc, 169, pp. 375-382, (1993)