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

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...

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Autores principales: Li, Xiao-Cheng, Hu, Qi-Kuan, Chen, Ling, Liu, Si-yang, Su, Shi, Tao, Hong, Zhang, Lin-Na, Sun, Tao, He, Lan-Jie
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Ivyspring International Publisher 2017
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5707750/
https://www.ncbi.nlm.nih.gov/pubmed/29200947
http://dx.doi.org/10.7150/ijms.20653
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author Li, Xiao-Cheng
Hu, Qi-Kuan
Chen, Ling
Liu, Si-yang
Su, Shi
Tao, Hong
Zhang, Lin-Na
Sun, Tao
He, Lan-Jie
author_facet Li, Xiao-Cheng
Hu, Qi-Kuan
Chen, Ling
Liu, Si-yang
Su, Shi
Tao, Hong
Zhang, Lin-Na
Sun, Tao
He, Lan-Jie
author_sort Li, Xiao-Cheng
collection PubMed
description 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.
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spelling pubmed-57077502017-11-30 HSPB8 Promotes the Fusion of Autophagosome and Lysosome during Autophagy in Diabetic Neurons Li, Xiao-Cheng Hu, Qi-Kuan Chen, Ling Liu, Si-yang Su, Shi Tao, Hong Zhang, Lin-Na Sun, Tao He, Lan-Jie Int J Med Sci Research Paper 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. Ivyspring International Publisher 2017-10-15 /pmc/articles/PMC5707750/ /pubmed/29200947 http://dx.doi.org/10.7150/ijms.20653 Text en © Ivyspring International Publisher This is an open access article distributed under the terms of the Creative Commons Attribution (CC BY-NC) license (https://creativecommons.org/licenses/by-nc/4.0/). See http://ivyspring.com/terms for full terms and conditions.
spellingShingle Research Paper
Li, Xiao-Cheng
Hu, Qi-Kuan
Chen, Ling
Liu, Si-yang
Su, Shi
Tao, Hong
Zhang, Lin-Na
Sun, Tao
He, Lan-Jie
HSPB8 Promotes the Fusion of Autophagosome and Lysosome during Autophagy in Diabetic Neurons
title HSPB8 Promotes the Fusion of Autophagosome and Lysosome during Autophagy in Diabetic Neurons
title_full HSPB8 Promotes the Fusion of Autophagosome and Lysosome during Autophagy in Diabetic Neurons
title_fullStr HSPB8 Promotes the Fusion of Autophagosome and Lysosome during Autophagy in Diabetic Neurons
title_full_unstemmed HSPB8 Promotes the Fusion of Autophagosome and Lysosome during Autophagy in Diabetic Neurons
title_short HSPB8 Promotes the Fusion of Autophagosome and Lysosome during Autophagy in Diabetic Neurons
title_sort hspb8 promotes the fusion of autophagosome and lysosome during autophagy in diabetic neurons
topic Research Paper
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5707750/
https://www.ncbi.nlm.nih.gov/pubmed/29200947
http://dx.doi.org/10.7150/ijms.20653
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