2014
DOI: 10.1016/j.febslet.2014.07.037
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Selenoprotein K form an intermolecular diselenide bond with unusually high redox potential

Abstract: Selenoprotein K (SelK) is a membrane protein involved in antioxidant defense, calcium regulation and the ER-associated protein degradation pathway. We found that SelK exhibits a peroxidase activity with a rate that is low but within the range of other peroxidases. Notably, SelK reduced hydrophobic substrates, such as phospholipid hydroperoxides, which damage membranes. Thus, SelK might be involved in membrane repair or related pathways. SelK was also found to contain a diselenide bond — the first intramolecula… Show more

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Cited by 44 publications
(34 citation statements)
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References 66 publications
(95 reference statements)
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“…As discussed earlier, purified SelK can dimerize via an intermolecular diselenide bond that exhibits strong reducing potential (22). Purified SelK exhibits some level of peroxidase activity and is able to reduce hydrophobic substrates such as phospholipid hydroperoxides, which is consistent with antioxidant activity displayed by human SelK overexpressed in cells (23).…”
Section: Other Functions Of Selk and Potential Relationships With Prosupporting
confidence: 72%
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“…As discussed earlier, purified SelK can dimerize via an intermolecular diselenide bond that exhibits strong reducing potential (22). Purified SelK exhibits some level of peroxidase activity and is able to reduce hydrophobic substrates such as phospholipid hydroperoxides, which is consistent with antioxidant activity displayed by human SelK overexpressed in cells (23).…”
Section: Other Functions Of Selk and Potential Relationships With Prosupporting
confidence: 72%
“…The cytosolic region of SelK is rich in both prolines and glycines, with a calpain-2 cleavage site present in the cytosolic region between amino-acid residues Arg81 and Gly82 (17). Purified human SelK was found to dimerize through the formation of intermolecular diselenide bonds (22), but it remains unclear whether this occurs in the ER membrane of mammalian cells. Other than the Sec residue, the most distinctive feature of SelK is a predicted Src homology 3 (SH3) binding domain.…”
Section: Structure and Localization Of Selkmentioning
confidence: 99%
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“…It also interacts with additional p97 adaptors, substrate recruiters, and partners [9]. In contrast to SELENOS, SELENOK’s specific role in the ERAD pathway is not yet known [1, 10]. In addition to its involvement in the ERAD, SELENOK, however, was shown to bind and stabilize the palmitoyl transferase DHHC6 [11].…”
Section: Introductionmentioning
confidence: 99%
“…Furthermore, the two proteins are intrinsically disordered and as such they are prone to proteolytic cleavage in host organisms [15]. All these challenges were addressed by expressing both SELENOK and SELENOS in the robust host E. coli using a fused protein partner to increase solubility and prevent integration into E. coli membranes [10, 1618]. For both the proteins the incorporation of Sec is essential to maintain their functional integrity [10, 11, 17, 18].…”
Section: Introductionmentioning
confidence: 99%