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Palmitoylation and Membrane Interactions of the Neuroprotective Chaperone Cysteine-string Protein*S⃞

机译:神经保护分子伴侣的棕榈酰化和膜相互作用 半胱氨酸弦 蛋白质*S⃞

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摘要

Cysteine-string protein (CSP) is an extensively palmitoylated DnaJ-family chaperone, which exerts an important neuroprotective function. Palmitoylation is required for the intracellular sorting and function of CSP, and thus it is important to understand how this essential modification of CSP is regulated. Recent work identified 23 putative palmitoyl transferases containing a conserved DHHC domain in mammalian cells, and here we show that palmitoylation of CSP is enhanced specifically by co-expression of the Golgi-localized palmitoyl transferases DHHC3, DHHC7, DHHC15, or DHHC17. Indeed, these DHHC proteins promote stable membrane attachment of CSP, which is otherwise cytosolic. An inverse correlation was identified between membrane affinity of unpalmitoylated CSP mutants and subsequent palmitoylation: mutants with an increased membrane affinity localize to the endoplasmic reticulum (ER) and are physically separated from the Golgi-localized DHHC proteins. Palmitoylation of an ER-localized mutant could be rescued by brefeldin A treatment, which promotes the mixing of ER and Golgi membranes. Interestingly though, the palmitoylated mutant remained at the ER following brefeldin A washout and did not traffic to more distal membrane compartments. We propose that CSP has a weak membrane affinity that allows the protein to locate its partner Golgi-localized DHHC proteins directly by membrane “sampling.” Mutations that enhance membrane association prevent sampling and lead to accumulation of CSP on cellular membranes such as the ER. The coupling of CSP palmitoylation to Golgi membranes may thus be an important requirement for subsequent sorting.
机译:半胱氨酸弦蛋白(CSP)是一种广泛的棕榈酰化的DnaJ家族伴侣,具有重要的神经保护功能。棕榈酰化对于CSP的细胞内分选和功能是必需的,因此重要的是了解如何调节CSP的这种基本修饰。最近的工作鉴定了在哺乳动物细胞中含有保守的DHHC结构域的23种推定的棕榈酰转移酶,在这里我们表明CSP的棕榈酰化可以通过高尔基定位的棕榈酰转移酶DHHC3,DHHC7,DHHC15或DHHC17的共表达而特别增强。实际上,这些DHHC蛋白促进了CSP的稳定膜附着,而CSP则是胞质的。在未棕榈酸化的CSP突变体的膜亲和力与随后的棕榈酰化之间发现了逆相关性:具有增加的膜亲和力的突变体位于内质网(ER),并与高尔基体DHHC蛋白物理分离。布雷菲德菌素A处理可以挽救ER定位突变体的棕榈酰化作用,从而促进ER和高尔基体膜的混合。但是,有趣的是,在布雷菲德菌素A洗脱后,棕榈酰化的突变体仍保留在ER处,并且没有转运至更多的远端膜区室。我们建议CSP具有较弱的膜亲和力,从而使该蛋白可以通过膜“采样”直接定位其伴侣高尔基体定位的DHHC蛋白。增强膜结合的突变会阻止采样,并导致CSP在细胞膜(例如ER)上积聚。因此,CSP棕榈酰化与高尔基体膜的偶联可能是后续分选的重要要求。

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