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首页> 外文期刊>The American journal of pathology. >Heat Shock Protein 70 (HSP70) Is Critical for the Photoreceptor Stress Response after Retinal Detachment via Modulating Anti-Apoptotic Akt Kinase
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Heat Shock Protein 70 (HSP70) Is Critical for the Photoreceptor Stress Response after Retinal Detachment via Modulating Anti-Apoptotic Akt Kinase

机译:热休克蛋白70(HSP70)对于视网膜脱离后通过调节抗凋亡Akt激酶的光感受器应激反应至关重要。

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Photoreceptor apoptosis is a major cause of vision loss in many ocular diseases. Significant progress has been made to elucidate the molecular pathways involved in this process, yet little is known about proteins counteracting these apoptotic pathways. It is established that heat shock proteins (HSPs) function as molecular helper proteins (chaperones) by preventing protein aggregation and facilitating refolding of dysfunctional proteins, critical to the survival of all organisms. Here, we investigated the role of HSP70 on photoreceptor survival after experimental retinal detachment (RD) in mice and rats. We found that HSP70 was up-regulated after RD and associated with phosphorylated Akt, thereby preventing its dephosphorylation and further activation of cell death pathways. Administration of quercetin, which inhibits HSP70 and suppresses Akt phosphorylation significantly increased photoreceptor apoptosis. Similarly, RD-induced photoreceptor apoptosis was augmented in mice carrying hypomorphic mutations of the genes encoding HSP70. On the other hand, administration of geranylgeranylacetone, which induces an increase in HSP70 significantly decreased photoreceptor apoptosis after RD through prolonged activation of Akt pathway. Thus, HSP70 may be a favorable potential target to increase photoreceptor cell survival after RD.
机译:感光细胞凋亡是许多眼科疾病中视力丧失的主要原因。在阐明该过程中涉及的分子途径方面已取得重大进展,但对于抵消这些凋亡途径的蛋白质知之甚少。已经确定,热休克蛋白(HSP)通过阻止蛋白质聚集并促进功能失调的蛋白质的重新折叠(对所有生物的生存至关重要)而充当分子辅助蛋白(分子伴侣)。在这里,我们调查了小鼠和大鼠实验性视网膜脱离(RD)后HSP70对光感受器存活的作用。我们发现RD后HSP70上调并与磷酸化的Akt结合,从而防止其脱磷酸化并进一步激活细胞死亡途径。槲皮素的给药可抑制HSP70并抑制Akt磷酸化,从而显着增加感光细胞的凋亡。类似地,在携带编码HSP70的基因的亚型突变的小鼠中,RD诱导的感光细胞凋亡增加。另一方面,通过延长Akt途径的活化,诱导HSP70增加的香叶基香叶基丙酮基丙酮的施用显着降低了RD后的光感受器凋亡。因此,HSP70可能是增加RD后感光细胞存活率的潜在潜在靶标。

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