Unconventional tonicity-regulated nuclear trafficking of NFAT5 mediated by KPNB1, XPOT and RUVBL2

Author:

Cheung Chris Y.12ORCID,Huang Ting-Ting12,Chow Ning12ORCID,Zhang Shuqi12,Zhao Yanxiang12,Chau Mary P.12,Chan Wing Cheung12,Wong Catherine C. L.34,Boassa Daniela567ORCID,Phan Sebastien567,Ellisman Mark H.567,Yates John R.8ORCID,Xu SongXiao9ORCID,Yu Zicheng12,Zhang Yajing12,Zhang Rui12ORCID,Ng Ling Ling12,Ko Ben C. B.12ORCID

Affiliation:

1. The Hong Kong Polytechnic University 1 Department of Applied Biology and Chemical Technology , , Hong Kong , China

2. , The Hong Kong Polytechnic University 2 State Key Laboratory of Chemical Biology and Drug Discovery , Hong Kong , China

3. , Health Science Center, Peking University 3 Center for Precision Medicine Multi-Omics Research , China Clinical Laboratory Department , , 102206, Beijing , China

4. The Cancer Hospital of the University of Chinese Academy of Sciences 3 Center for Precision Medicine Multi-Omics Research , China Clinical Laboratory Department , , 102206, Beijing , China

5. University of California 4 Department of Neurosciences , , , La Jolla, CA 92093 , USA

6. San Diego 4 Department of Neurosciences , , , La Jolla, CA 92093 , USA

7. , National Center for Microscopy and Imaging Research, University of California, San Diego 5 Center for Research in Biological Systems , La Jolla, CA 92093 , USA

8. The Scripps Research Institute 6 Department of Chemical Physiology , , La Jolla, CA 92037 , USA

9. The Cancer Hospital of the University of Chinese Academy of Sciences (Zhejiang Cancer Hospital), Institute of Basic Medicine and Cancer, Chinese Academy of Sciences 7 The Clinical Laboratory Department , , Hangzhou, 310000, Zhejiang , China

Abstract

ABSTRACT NFAT5 is the only known mammalian tonicity-responsive transcription factor with an essential role in cellular adaptation to hypertonic stress. It is also implicated in diverse physiological and pathological processes. NFAT5 activity is tightly regulated by extracellular tonicity, but the underlying mechanisms remain elusive. Here, we demonstrate that NFAT5 enters the nucleus via the nuclear pore complex. We found that NFAT5 utilizes a unique nuclear localization signal (NFAT5-NLS) for nuclear import. siRNA screening revealed that only karyopherin β1 (KPNB1), but not karyopherin α, is responsible for the nuclear import of NFAT5 via direct interaction with the NFAT5-NLS. Proteomics analysis and siRNA screening further revealed that nuclear export of NFAT5 under hypotonicity is driven by exportin-T (XPOT), where the process requires RuvB-like AAA-type ATPase 2 (RUVBL2) as an indispensable chaperone. Our findings have identified an unconventional tonicity-dependent nucleocytoplasmic trafficking pathway for NFAT5 that represents a critical step in orchestrating rapid cellular adaptation to change in extracellular tonicity. These findings offer an opportunity for the development of novel NFAT5 targeting strategies that are potentially useful for the treatment of diseases associated with NFAT5 dysregulation.

Funder

Research Grants Council, University Grants Committee

Hong Kong Polytechnic University

Health and Medical Research Fund

National Institutes of Health

Publisher

The Company of Biologists

Subject

Cell Biology

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