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Structure and function analysis of the C. elegans aminophospholipid translocase TAT-1.


ABSTRACT: The Caenorhabditis elegans aminophospholipid translocase TAT-1 maintains phosphatidylserine (PS) asymmetry in the plasma membrane and regulates endocytic transport. Despite these important functions, the structure-function relationship of this protein is poorly understood. Taking advantage of the tat-1 mutations identified by the C. elegans million mutation project, we investigated the effects of 16 single amino acid substitutions on the two functions of the TAT-1 protein. Two substitutions that alter a highly conserved PISL motif in the fourth transmembrane domain and a highly conserved DKTGT phosphorylation motif, respectively, disrupt both functions of TAT-1, leading to a vesicular gut defect and ectopic PS exposure on the cell surface, whereas most other substitutions across the TAT-1 protein, often predicted to be deleterious by bioinformatics programs, do not affect the functions of TAT-1. These results provide in vivo evidence for the importance of the PISL and DKTGT motifs in P4-type ATPases and improve our understanding of the structure-function relationship of TAT-1. Our study also provides an example of how the C. elegans million mutation project helps decipher the structure, functions, and mechanisms of action of important genes.

SUBMITTER: Chen YZ 

PROVIDER: S-EPMC6432707 | biostudies-literature | 2019 Feb

REPOSITORIES: biostudies-literature

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Structure and function analysis of the <i>C. elegans</i> aminophospholipid translocase TAT-1.

Chen Yu-Zen YZ   Klöditz Katharina K   Lee Eui-Seung ES   Nguyen Diemmy Pham DP   Yuan Quan Q   Johnson Jack J   Lee-Yow Yannick Y   Hall Adam A   Mitani Shohei S   Xia Ning-Shao NS   Fadeel Bengt B   Xue Ding D  

Journal of cell science 20190228 5


The <i>Caenorhabditis elegans</i> aminophospholipid translocase TAT-1 maintains phosphatidylserine (PS) asymmetry in the plasma membrane and regulates endocytic transport. Despite these important functions, the structure-function relationship of this protein is poorly understood. Taking advantage of the <i>tat-1</i> mutations identified by the <i>C. elegans</i> million mutation project, we investigated the effects of 16 single amino acid substitutions on the two functions of the TAT-1 protein. T  ...[more]

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