Dual functions of TAF7L in adipocyte differentiation

Author:

Zhou Haiying12,Kaplan Tommy34,Li Yan5,Grubisic Ivan26,Zhang Zhengjian5,Wang P Jeremy7,Eisen Michael B13,Tjian Robert12

Affiliation:

1. Department of Molecular and Cell Biology, Howard Hughes Medical Institute, University of California, Berkeley, Berkeley, United States

2. Li Ka Shing Center For Biomedical and Health Sciences, CIRM Center of Excellence, University of California, Berkeley, Berkeley, United States

3. Department of Molecular and Cell Biology, California Institute of Quantitative Biosciences, University of California, Berkeley, United States

4. School of Computer Science and Engineering, The Hebrew University of Jerusalem, Jerusalem, Israel

5. Janelia Farm Research Campus, Howard Hughes Medical Institute, Ashburn, United States

6. UC Berkeley-UCSF Graduate Program in Bioengineering, Department of Molecular and Cell Biology, California Institute of Quantitative Biosciences, University of California, Berkeley, Berkeley, United States

7. Department of Animal Biology, University of Pennsylvania School of Veterinary Medicine, Philadelphia, United States

Abstract

The diverse transcriptional mechanisms governing cellular differentiation and development of mammalian tissue remains poorly understood. Here we report that TAF7L, a paralogue of TFIID subunit TAF7, is enriched in adipocytes and white fat tissue (WAT) in mouse. Depletion of TAF7L reduced adipocyte-specific gene expression, compromised adipocyte differentiation, and WAT development as well. Ectopic expression of TAF7L in myoblasts reprograms these muscle precursors into adipocytes upon induction. Genome-wide mRNA-seq expression profiling and ChIP-seq binding studies confirmed that TAF7L is required for activating adipocyte-specific genes via a dual mechanism wherein it interacts with PPARγ at enhancers and TBP/Pol II at core promoters. In vitro binding studies confirmed that TAF7L forms complexes with both TBP and PPARγ. These findings suggest that TAF7L plays an integral role in adipocyte gene expression by targeting enhancers as a cofactor for PPARγ and promoters as a component of the core transcriptional machinery.

Funder

Howard Hughes Medical Institute

National Institutes of Health

Publisher

eLife Sciences Publications, Ltd

Subject

General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

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