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热休克蛋白家族成员 8(HSPB8)促进糖尿病神经元自噬过程中自噬体与溶酶体的融合。

HSPB8 Promotes the Fusion of Autophagosome and Lysosome during Autophagy in Diabetic Neurons.

机构信息

General Hospital of Ningxia Medical University, Yinchuan, 750000, China.

Ningxia Key Laboratory of Cerebrocranial Diseases, the National Key Laboratory Incubation Base, Yinchuan, 750000, China.

出版信息

Int J Med Sci. 2017 Oct 15;14(13):1335-1341. doi: 10.7150/ijms.20653. eCollection 2017.

Abstract

Although autophagy has been proposed to play an emerging role in diabetic neuropathy, autophagy and its possible role remains unclear. Moreover, only few studies about diabetes have explored the autophagy mediated by heat shock protein beta-8 (HSPB8) and Bcl-2 associated athanogene 3 (BAG3). In the present study, we examined the autophagy induced by high glucose levels in an in vivo rat model of diabetes induced by streptozotocin (STZ) and an in vitro model of retinal ganglion cell-5 (RGC5) cells under high glucose conditions. In the spinal cord tissues of the STZ-induced diabetic rats, the levels of light chain 3 (LC3) and Beclin-1-marked autophagy rose with increasing HSPB8 and BAG3 levels. By confocal immunofluorescence, HSPB8 and LC3 were observed to be co-localized in the spinal cord tissues. In the RGC5 cells, high-glucose stimulation upregulated the expression of LC3-Ⅱ, Beclin-1, and HSPB8 in a dose-dependent manner. When the RGC5 cells were subjected to high-glucose conditions, HSPB8 overexpression, along with upregulated LC3-Ⅱ and Beclin-1 expression, increased the autophagic rate, whereas siRNA-silenced HSPB8 decreased the autophagic rate. Furthermore, in GFP-mRFP-LC3 probe experiments, HSPB8 overexpression promoted autophagosome-lysosome fusion, whereas HSPB8 silencing disrupted this process. In the cells treated with HSPB8 and siRNA, the fusion was impaired, as indicated by the elevated p62 expression. HSPB8 overexpression can partly rescue the blocking of the autophagy flux with chloroquine through the reduction of p62 expression level. Our study demonstrated that HSPB8 is involved in the high glucose-induced autophagy under the in vivo and in vitro conditions and critically participated in the autophagosome-lysosome fusion during the autophagy flux.

摘要

尽管自噬在糖尿病性神经病中发挥着新兴作用的观点已被提出,但自噬及其可能的作用仍不清楚。此外,仅有少数关于糖尿病的研究探索了热休克蛋白β-8(HSPB8)和 Bcl-2 相关抗凋亡基因 3(BAG3)介导的自噬。在本研究中,我们检测了链脲佐菌素(STZ)诱导的糖尿病大鼠体内模型和高葡萄糖条件下视网膜神经节细胞-5(RGC5)细胞体外模型中高葡萄糖诱导的自噬。在 STZ 诱导的糖尿病大鼠脊髓组织中,LC3 和 Beclin-1 标记的自噬水平随着 HSPB8 和 BAG3 水平的升高而升高。通过共聚焦免疫荧光观察到 HSPB8 和 LC3 在脊髓组织中发生共定位。在 RGC5 细胞中,高葡萄糖刺激以剂量依赖性方式上调 LC3-Ⅱ、Beclin-1 和 HSPB8 的表达。当 RGC5 细胞处于高葡萄糖条件下时,HSPB8 过表达以及 LC3-Ⅱ和 Beclin-1 表达上调会增加自噬率,而 HSPB8 siRNA 沉默则会降低自噬率。此外,在 GFP-mRFP-LC3 探针实验中,HSPB8 过表达促进自噬体-溶酶体融合,而 HSPB8 沉默则破坏了这一过程。在用 HSPB8 和 siRNA 处理的细胞中,融合受到了损害,表现为 p62 表达水平升高。HSPB8 过表达可通过降低 p62 表达水平部分挽救氯喹阻断自噬流。我们的研究表明,HSPB8 参与了体内和体外高葡萄糖诱导的自噬,并在自噬流中关键参与了自噬体-溶酶体融合。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9ef5/5707750/7a16c2ae2bcf/ijmsv14p1335g001.jpg

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