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热应激后分化的人神经元细胞中热休克蛋白Hsp70的HSPA6和HSPA1A与蛋白质解聚/重折叠机器组件的差异靶向作用

Differential Targeting of Hsp70 Heat Shock Proteins HSPA6 and HSPA1A with Components of a Protein Disaggregation/Refolding Machine in Differentiated Human Neuronal Cells following Thermal Stress.

作者信息

Deane Catherine A S, Brown Ian R

机构信息

Department of Biological Sciences, Centre for the Neurobiology of Stress, University of Toronto ScarboroughToronto, ON, Canada.

出版信息

Front Neurosci. 2017 Apr 24;11:227. doi: 10.3389/fnins.2017.00227. eCollection 2017.

Abstract

Heat shock proteins (Hsps) co-operate in multi-protein machines that counter protein misfolding and aggregation and involve DNAJ (Hsp40), HSPA (Hsp70), and HSPH (Hsp105α). The HSPA family is a multigene family composed of inducible and constitutively expressed members. Inducible HSPA6 (Hsp70B') is found in the human genome but not in the genomes of mouse and rat. To advance knowledge of this little studied HSPA member, the targeting of HSPA6 to stress-sensitive neuronal sites with components of a disaggregation/refolding machine was investigated following thermal stress. HSPA6 targeted the periphery of nuclear speckles (perispeckles) that have been characterized as sites of transcription. However, HSPA6 did not co-localize at perispeckles with DNAJB1 (Hsp40-1) or HSPH1 (Hsp105α). At 3 h after heat shock, HSPA6 co-localized with these members of the disaggregation/refolding machine at the granular component (GC) of the nucleolus. Inducible HSPA1A (Hsp70-1) and constitutively expressed HSPA8 (Hsc70) co-localized at nuclear speckles with components of the machine immediately after heat shock, and at the GC layer of the nucleolus at 1 h with DNAJA1 and BAG-1. These results suggest that HSPA6 exhibits targeting features that are not apparent for HSPA1A and HSPA8.

摘要

热休克蛋白(Hsps)在多蛋白机器中协同作用,对抗蛋白质错误折叠和聚集,涉及DNAJ(Hsp40)、HSPA(Hsp70)和HSPH(Hsp105α)。HSPA家族是一个由诱导型和组成型表达成员组成的多基因家族。诱导型HSPA6(Hsp70B')存在于人类基因组中,但不存在于小鼠和大鼠的基因组中。为了增进对这个研究较少的HSPA成员的了解,在热应激后,研究了将HSPA6与解聚/重折叠机器的组件靶向到应激敏感神经元位点的情况。HSPA6靶向已被表征为转录位点的核斑点周边(核斑点外周)。然而,HSPA6并未在核斑点外周与DNAJB1(Hsp40-1)或HSPH1(Hsp105α)共定位。热休克后3小时,HSPA6在核仁的颗粒组分(GC)处与解聚/重折叠机器的这些成员共定位。诱导型HSPA1A(Hsp70-1)和组成型表达的HSPA8(Hsc70)在热休克后立即在核斑点处与该机器的组件共定位,并在1小时时在核仁的GC层与DNAJA1和BAG-1共定位。这些结果表明,HSPA6表现出HSPA1A和HSPA8所不具有的靶向特征。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a708/5401876/87b4c86ffb38/fnins-11-00227-g0001.jpg

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