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DNAJB6 是一种肽结合伴侣,它可以在亚化学计量摩尔比下抑制多聚谷氨酰胺肽的淀粉样纤维形成。

DNAJB6 is a peptide-binding chaperone which can suppress amyloid fibrillation of polyglutamine peptides at substoichiometric molar ratios.

机构信息

Department of Biochemistry & Structural Biology, Center for Molecular Protein Science, Lund University, Lund, Sweden,

出版信息

Cell Stress Chaperones. 2014 Mar;19(2):227-39. doi: 10.1007/s12192-013-0448-5. Epub 2013 Aug 1.

Abstract

Expanded polyglutamine (polyQ) stretches lead to protein aggregation and severe neurodegenerative diseases. A highly efficient suppressor of polyQ aggregation was identified, the DNAJB6, when molecular chaperones from the HSPH, HSPA, and DNAJ families were screened for huntingtin exon 1 aggregation in cells (Hageman et al. in Mol Cell 37(3):355-369, 2010). Furthermore, also aggregation of polyQ peptides expressed in cells was recently found to be efficiently suppressed by co-expression of DNAJB6 (Gillis et al. in J Biol Chem 288:17225-17237, 2013). These suppression effects can be due to an indirect effect of DNAJB6 on other cellular components or to a direct interaction between DNAJB6 and polyQ peptides that may depend on other cellular components. Here, we have purified the DNAJB6 protein to investigate the suppression mechanism. The purified DNAJB6 protein formed large heterogeneous oligomers, in contrast to the more canonical family member DNAJB1 which is dimeric. Purified DNAJB6 protein, at substoichiometric molar ratios, efficiently suppressed fibrillation of polyQ peptides with 45°Q in a thioflavin T fibrillation. No suppression was obtained with DNAJB1, but with the closest homologue to DNAJB6, DNAJB8. The suppression effect was independent of HSPA1 and ATP. These data, based on purified proteins and controlled fibrillation in vitro, strongly suggest that the fibrillation suppression is due to a direct protein-protein interaction between the polyQ peptides and DNAJB6 and that the DNAJB6 has unique fibrillation suppression properties lacking in DNAJB1. Together, the data obtained in cells and in vitro support the view that DNAJB6 is a peptide-binding chaperone that can interact with polyQ peptides that are incompletely degraded by and released from the proteasome.

摘要

扩展的多聚谷氨酰胺(polyQ)延伸导致蛋白质聚集和严重的神经退行性疾病。当从 HSPH、HSPA 和 DNAJ 家族筛选分子伴侣以抑制亨廷顿外显子 1 在细胞中的聚集时,发现了一种高效的多聚 Q 聚集抑制剂,即 DNAJB6(Hageman 等人,Mol Cell 37(3):355-369, 2010)。此外,最近还发现 DNAJB6 的共表达可有效抑制细胞中表达的 polyQ 肽的聚集(Gillis 等人,J Biol Chem 288:17225-17237, 2013)。这些抑制作用可能是由于 DNAJB6 对其他细胞成分的间接影响,或者是由于 DNAJB6 与 polyQ 肽之间的直接相互作用,这种相互作用可能依赖于其他细胞成分。在这里,我们已经纯化了 DNAJB6 蛋白以研究抑制机制。与更典型的家族成员 DNAJB1 形成二聚体不同,纯化的 DNAJB6 蛋白形成大的异质寡聚物。在亚化学计量摩尔比下,纯化的 DNAJB6 蛋白可有效抑制具有 45°Q 的 polyQ 肽在硫黄素 T 纤维形成中的纤维形成。DNAJB1 没有得到抑制,但与 DNAJB6 最接近的同源物 DNAJB8 得到了抑制。抑制作用与 HSPA1 和 ATP 无关。这些基于纯化蛋白和体外控制纤维形成的实验数据强烈表明,纤维形成的抑制是由于多聚 Q 肽与 DNAJB6 之间的直接蛋白-蛋白相互作用,并且 DNAJB6 具有缺乏于 DNAJB1 的独特的纤维形成抑制特性。综合细胞和体外获得的数据,支持 DNAJB6 是一种肽结合伴侣的观点,它可以与不完全降解并从蛋白酶体中释放的 polyQ 肽相互作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eb1a/3933622/f41834d0d988/12192_2013_448_Fig1_HTML.jpg

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