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Oligomerization and chaperone-like activity of Drosophila melanogaster small heat shock protein DmHsp27 and three arginine mutants in the alpha-crystallin domain

机译:果蝇小热激蛋白DmHsp27和α-晶状蛋白域中的三个精氨酸突变体的低聚和伴侣样活性。

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The small Hsp DmHsp27 from Drosophila melanogaster is one of the few small heat shock proteins (sHsps) found within the nucleus. We report that its dimerization is independent of disulfide bond formation and seems to rely on salt bridges. Unlike metazoan sHsps, DmHsp27 forms two populations of oligomers not in equilibrium. Mutations at highly conserved arginine residues in mammalian sHsps have been reported to be associated with protein conformational defects and intracellular aggregation. Independent mutation of three highly conserved arginines (R122, R131, and R135) to glycine in DmHsp27 results in only one population of higher molecular weight form. In vitro, the chaperone-like activity of wild-type DmHsp27 was comparable with that of its two isolated populations and to the single population of the R122G, R131G, and R135G using luciferase as substrate. However, using insulin, the chaperone-like activity of wild-type DmHsp27 was lower than that of R122G and R131G mutants. Altogether, the results characterize wild-type DmHsp27 and its alpha-crystallin domain (ACD) arginine mutants and may give insight into protection mechanism of sHsps.
机译:来自果蝇的小Hsp DmHsp27是在细胞核内发现的少数几个小热激蛋白(sHsps)之一。我们报告其二聚化与二硫键的形成无关,并且似乎依赖于盐桥。与后生动物sHsps不同,DmHsp27形成两个不平衡的寡聚体群体。哺乳动物sHsps中高度保守的精氨酸残基的突变据报道与蛋白质构象缺陷和细胞内聚集有关。 DmHsp27中三个高度保守的精氨酸(R122,R131和R135)向甘氨酸的独立突变导致仅一个较高分子量形式的群体。在体外,使用萤光素酶作为底物,野生型DmHsp27的分子伴侣样活性与其两个分离群体的分子伴侣活性和R122G,R131G和R135G的单个群体的活性相当。然而,使用胰岛素,野生型DmHsp27的伴侣样活性低于R122G和R131G突变体。总之,该结果表征了野生型DmHsp27及其α-晶状蛋白结构域(ACD)精氨酸突变体,并可能提供对sHsps保护机制的见解。

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