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Pro(178) and Pro(183) of Selenoprotein S Are Essential Residues for Interaction with p97( VCP) during Endoplasmic Reticulum-associated Degradation

Authors
Lee, Jea HwangKwon, Joon HyunJeon, Yeong HaKo, Kwan YoungLee, Seung-RockKim, Ick Young
Issue Date
16-5월-2014
Publisher
AMER SOC BIOCHEMISTRY MOLECULAR BIOLOGY INC
Keywords
ER Stress; ER-associated Degradation; Protein-Protein Interactions; Selenium; Selenoprotein; p97(VCP)
Citation
JOURNAL OF BIOLOGICAL CHEMISTRY, v.289, no.20, pp.13758 - 13768
Indexed
SCIE
SCOPUS
Journal Title
JOURNAL OF BIOLOGICAL CHEMISTRY
Volume
289
Number
20
Start Page
13758
End Page
13768
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/98505
DOI
10.1074/jbc.M113.534529
ISSN
0021-9258
Abstract
Background: SelS is a binding partner of p97(VCP) for endoplasmic reticulum-associated degradation (ERAD). Results: The proline mutants at SelS positions at 178 or 183 did not interact with p97(VCP). Conclusion: Both Pro(178) and Pro(183) of SelS are essential for SelS function during ERAD. Significance: The essential SelS amino acid residues for binding to p97(VCP) are identified. During endoplasmic reticulum (ER)-associated degradation, p97(VCP) is recruited to the ER membrane through interactions with transmembrane proteins, such as selenoprotein S (SelS), selenoprotein K (SelK), hrd1, and gp78. SelS has a single-spanning transmembrane domain and protects cells from ER stress-induced apoptosis through interaction with p97(VCP). The cytosolic tail of SelS consists of a coiled-coil domain, a putative VCP-interacting motif (VIM), and an unpronounced glycine- and proline-rich secondary structure. To understand the regulatory mechanism of SelS during ER stress, we investigated the interaction of the protein with p97(VCP) using mouse neuroblastoma cells and human embryonic kidney 293 cells. The SelS expression level increased when ER stress was induced. In addition, the effect of ER stress was enhanced, and recruitment of p97(VCP) to the ER membrane was inhibited in SelS knockdown cells. The effect of SelS knockdown was rescued by ectopic expression of SelS U188C. p97(VCP) interacted with SelS U188C and was recruited to the ER membrane. The expression of SelS[VIM], which is a VIM deletion mutant of SelS, also showed both a recovery effect and an interaction with p97(VCP) in cells. However, mutants in which the proline residue positions 178 or 183 of SelS were changed to alanine or were deleted did not interact with p97(VCP). The proline mutants did not rescue ER stress in SelS knockdown cells. These results suggest that both Pro(178) and Pro(183) of SelS play important roles in the translocation of p97(VCP) to the ER membrane and protect cells from ER stress.
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