Negative Regulators of Insulin Signaling Revealed in a Genome-Wide Functional Screen

被引:25
|
作者
Huang, Shih-Min A.
Hancock, Michael K.
Pitman, Jeffrey L.
Orth, Anthony P.
Gekakis, Nicholas
机构
[1] Genomics Institute of the Novartis Research Foundation, San Diego, CA
[2] The Scripps Research Institute, La Jolla, CA
[3] Novartis Institute for Biomedical Research, Developmental and Molecular Pathways, Cambridge, MA
[4] Invitrogen, Madison, WI
来源
PLOS ONE | 2009年 / 4卷 / 09期
关键词
D O I
10.1371/journal.pone.0006871
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
07 ; 0710 ; 09 ;
摘要
Background: Type 2 diabetes develops due to a combination of insulin resistance and beta-cell failure and current therapeutics aim at both of these underlying causes. Several negative regulators of insulin signaling are known and are the subject of drug discovery efforts. We sought to identify novel contributors to insulin resistance and hence potentially novel targets for therapeutic intervention. Methodology: An arrayed cDNA library encoding 18,441 human transcripts was screened for inhibitors of insulin signaling and revealed known inhibitors and numerous potential novel regulators. The novel hits included proteins of various functional classes such as kinases, phosphatases, transcription factors, and GTPase associated proteins. A series of secondary assays confirmed the relevance of the primary screen hits to insulin signaling and provided further insight into their modes of action. Conclusion/Significance: Among the novel hits was PALD (KIAA1274, paladin), a previously uncharacterized protein that when overexpressed led to inhibition of insulin's ability to down regulate a FOXO1A-driven reporter gene, reduced upstream insulin-stimulated AKT phosphorylation, and decreased insulin receptor (IR) abundance. Conversely, knockdown of PALD gene expression resulted in increased IR abundance, enhanced insulin-stimulated AKT phosphorylation, and an improvement in insulin's ability to suppress FOXO1A-driven reporter gene activity. The present data demonstrate that the application of arrayed genome-wide screening technologies to insulin signaling is fruitful and is likely to reveal novel drug targets for insulin resistance and the metabolic syndrome.
引用
收藏
页数:9
相关论文
共 50 条
  • [41] Genome-wide screening for regulators of degradation of insulin secretory granules with a fluorescent reporter
    Kanai, A.
    Nishida, Y.
    Ueki, K.
    Uzawa, H.
    Watada, H.
    DIABETOLOGIA, 2023, 66 (SUPPL 1) : S45 - S46
  • [42] Genome-wide screening for regulators of degradation of insulin secretory granules with a fluorescent reporter
    Kanai, Akiko
    Nishida, Yuya
    Iwamoto, Tatsuya
    Yokota, Mutsumi
    Aoyama, Shuhei
    Ueki, Kyosei
    Ito, Minami
    Uzawa, Hirotsugu
    Iida, Hitoshi
    Koike, Masato
    Watada, Hirotaka
    BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 2023, 676 : 132 - 140
  • [43] Functional dissection of an innate immune response by a genome-wide RNAi screen
    Foley, E
    O'Farrell, PH
    PLOS BIOLOGY, 2004, 2 (08) : 1091 - 1106
  • [44] Identification of Novel Regulators for GPCR-signaling via Genome-wide Analysis
    Baker, James
    Cranley, Juliana
    Pauer, Emma
    Rajasekhar, Abhinav
    Karthikeyan, Swathy
    Wang, Yuqi
    FASEB JOURNAL, 2022, 36
  • [45] Genome-Wide CRISPR Screen Identified That Alternative Splicing Regulates in Insulin Secretion
    Wei, Siying
    Pereira, Jessica Aparecida Da Silva
    Lee-Papastavros, Alexander
    Yi, Peng
    DIABETES, 2024, 73
  • [46] A genome-wide screen reveals new regulators of the 2-cell-like cell state
    Gupta, Nikhil
    Yakhou, Lounis
    Albert, Julien Richard
    Azogui, Anaelle
    Ferry, Laure
    Kirsh, Olivier
    Miura, Fumihito
    Battault, Sarah
    Yamaguchi, Kosuke
    Laisne, Marthe
    Domrane, Cecilia
    Bonhomme, Frederic
    Sarkar, Arpita
    Delagrange, Marine
    Ducos, Bertrand
    Cristofari, Gael
    Ito, Takashi
    Greenberg, Maxim V. C.
    Defossez, Pierre-Antoine
    NATURE STRUCTURAL & MOLECULAR BIOLOGY, 2023, 30 (08) : 1105 - 1118
  • [47] A genome-wide RNAi screen identifies multiple RSK-dependent regulators of cell migration
    Smolen, Gromoslaw A.
    Zhang, Jianmin
    Zubrowski, Matthew J.
    Edelman, Elena J.
    Luo, Biao
    Yu, Min
    Ng, Lydia W.
    Scherber, Cally M.
    Schott, Benjamin J.
    Ramaswamy, Sridhar
    Irimia, Daniel
    Root, David E.
    Haber, Daniel A.
    GENES & DEVELOPMENT, 2010, 24 (23) : 2654 - 2665
  • [48] A genome-wide screen reveals new regulators of the 2-cell-like cell state
    Nikhil Gupta
    Lounis Yakhou
    Julien Richard Albert
    Anaelle Azogui
    Laure Ferry
    Olivier Kirsh
    Fumihito Miura
    Sarah Battault
    Kosuke Yamaguchi
    Marthe Laisné
    Cécilia Domrane
    Frédéric Bonhomme
    Arpita Sarkar
    Marine Delagrange
    Bertrand Ducos
    Gael Cristofari
    Takashi Ito
    Maxim V. C. Greenberg
    Pierre-Antoine Defossez
    Nature Structural & Molecular Biology, 2023, 30 : 1105 - 1118
  • [49] A genome-wide CRISPR screen maps endogenous regulators of PPARG gene expression in bladder cancer
    Tortora, Davide
    Roberts, Morgan E.
    Kumar, Gunjan
    Kotapalli, Sudha S.
    Ritch, Elie
    Scurll, Joshua M.
    McConeghy, Brian
    Sinha, Sunita
    Wyatt, Alexander W.
    Black, Peter C.
    Daugaard, Mads
    ISCIENCE, 2023, 26 (05)
  • [50] Genome-wide CRISPR screen in human T cells reveals regulators of FOXP3
    Chen, Kelvin Y.
    Kibayashi, Tatsuya
    Giguelay, Ambre
    Hata, Mayu
    Nakajima, Shunsuke
    Mikami, Norihisa
    Takeshima, Yusuke
    Ichiyama, Kenji
    Omiya, Ryusuke
    Ludwig, Leif S.
    Hattori, Kunihiro
    Sakaguchi, Shimon
    NATURE, 2025,