Functional Characterization of TMEM127 Variants Reveals Novel Insights into Its Membrane Topology and Trafficking

Author:

Flores Shahida K1,Deng Yilun1,Cheng Ziming1,Zhang Xingyu12,Tao Sifan12,Saliba Afaf1,Chu Irene1,Burnichon Nelly34,Gimenez-Roqueplo Anne-Paule34,Wang Exing5,Aguiar Ricardo C T167,Dahia Patricia L M16ORCID

Affiliation:

1. Division of Hematology and Medical Oncology, Department of Medicine, UT Health San Antonio

2. Central South University Xiangya School of Medicine, Changsha, Hunan, China

3. Assistance Publique-Hôpitaux de Paris (AP-HP), Hôpital Européen Georges Pompidou, Genetics Department, Paris, France

4. Université de Paris, PARCC, INSERM, Equipe Labellisée par la Ligue contre le Cancer, Paris, France

5. Department of Cell Systems and Anatomy, UT Health San Antonio, San Antonio, Texas

6. Mays Cancer Center, UT Health San Antonio, San Antonio, Texas

7. South Texas Veterans Health Care System, Audie Murphy VA Hospital, San Antonio, Texas

Abstract

Abstract Context TMEM127 is a poorly known tumor suppressor gene associated with pheochromocytomas, paragangliomas, and renal carcinomas. Our incomplete understanding of TMEM127 function has limited our ability to predict variant pathogenicity. Purpose To better understand the function of the transmembrane protein TMEM127 we undertook cellular and molecular evaluation of patient-derived germline variants. Design Subcellular localization and steady-state levels of tumor-associated, transiently expressed TMEM127 variants were compared to the wild-type protein using immunofluorescence and immunoblot analysis, respectively, in cells genetically modified to lack endogenous TMEM127. Membrane topology and endocytic mechanisms were also assessed. Results We identified 3 subgroups of mutations and determined that 71% of the variants studied are pathogenic or likely pathogenic through loss of membrane-binding ability, stability, and/or internalization capability. Investigation into an N-terminal cluster of missense variants uncovered a previously unrecognized transmembrane domain, indicating that TMEM127 is a 4- transmembrane, not a 3-transmembrane domain-containing protein. Additionally, a C-terminal variant with predominant plasma membrane localization revealed an atypical, extended acidic, dileucine-based motif required for TMEM127 internalization through clathrin-mediated endocytosis. Conclusion We characterized the functional deficits of several germline TMEM127 variants and identified novel structure–function features of TMEM127. These findings will assist in determining pathogenicity of TMEM127 variants and will help guide future studies investigating the cellular role of TMEM127.

Funder

National Institutes of Health

National Institute of General Medical Sciences

National Cancer Institute

Cancer Prevention and Research Institute of Texas

Clinical and Translational Science Award

National Center for Advancing Translational Sciences

Alex's Lemonade Stand Foundation

National Institute of Environmental Health Sciences

Veterans Administration Merit Award

Central South University Xiangya School of Medicine

Publisher

The Endocrine Society

Subject

Biochemistry (medical),Clinical Biochemistry,Endocrinology,Biochemistry,Endocrinology, Diabetes and Metabolism

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