Caprin-1 binding to the critical stress granule protein G3BP1 is influenced by pH

Author:

Schulte Tim1,Panas Marc D.2,Han Xiao1ORCID,Williams Lucy2,Kedersha Nancy34,Fleck Jonas Simon1,Tan Timothy J. C.2,Dopico Xaquin Castro2ORCID,Olsson Anders5,Morro Ainhoa Moliner2,Hanke Leo2ORCID,Nilvebrant Johan67,Giang Kim Anh67,Nygren Per-Åke67,Anderson Paul34,Achour Adnane1ORCID,McInerney Gerald M.2ORCID

Affiliation:

1. Science for Life Laboratory, Department of Medicine Solna, Karolinska Institutet, and Division of Infectious Diseases, Karolinska University Hospital, Stockholm, 171 77, Sweden

2. Department of Microbiology, Tumor and Cell Biology, Karolinska Institutet, Stockholm, 171 77, Sweden

3. Division of Rheumatology, Immunity, and Inflammation, Brigham and Women's Hospital, Harvard Medical School, Boston, MA 02115, USA

4. Harvard Medical School Initiative for RNA Medicine, Harvard Medical School, Boston, MA 02115, USA

5. Protein Expression and Characterization, AlbaNova University Center, Royal Institute of Technology, 114 21, Stockholm

6. Division of Protein Engineering, Department of Protein Science, School of Engineering Sciences in Chemistry, Biotechnology and Health, AlbaNova University Center, Royal Institute of Technology, 114 21, Stockholm

7. Science for Life Laboratory, Tomtebodavägen 23A, 171 65, Sweden

Abstract

G3BP is the central node within stress-induced protein–RNA interaction networks known as stress granules (SGs). The SG-associated proteins Caprin-1 and USP10 bind mutually exclusively to the NTF2 domain of G3BP1, promoting and inhibiting SG formation, respectively. Herein, we present the crystal structure of G3BP1-NTF2 in complex with a Caprin-1-derived short linear motif (SLiM). Caprin-1 interacts with His-31 and His-62 within a third NTF2-binding site outside those covered by USP10, as confirmed using biochemical and biophysical-binding assays. Nano-differential scanning fluorimetry revealed reduced thermal stability of G3BP1-NTF2 at acidic pH. This destabilization was counterbalanced significantly better by bound USP10 than Caprin-1. The G3BP1/USP10 complex immunoprecipated from human U2OS cells was more resistant to acidic buffer washes than G3BP1/Caprin-1. Acidification of cellular condensates by approximately 0.5 units relative to the cytosol was detected by ratiometric fluorescence analysis of pHluorin2 fused to G3BP1. Cells expressing a Caprin-1/FGDF chimera with higher G3BP1-binding affinity had reduced Caprin-1 levels and slightly reduced condensate sizes. This unexpected finding may suggest that binding of the USP10-derived SLiM to NTF2 reduces the propensity of G3BP1 to enter condensates.

Funder

Swedish Society for Medical Research

Stiftelsen Clas Groschinskys Minnesfond

Swedish Research Council

Swedish Cancer Foundation

NIH

Publisher

The Royal Society

Subject

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

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