首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Restoration of visual function in P23H rhodopsin transgenic rats by gene delivery of BiP/Grp78
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Restoration of visual function in P23H rhodopsin transgenic rats by gene delivery of BiP/Grp78

机译:通过BiP / Grp78的基因传递恢复P23H视紫红质转基因大鼠的视觉功能

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摘要

The P23H mutation within the rhodopsin gene (RHO) causes rhodopsin misfolding, endoplasmic reticulum (ER) stress, and activates the unfolded protein response (UPR), leading to rod photoreceptor degeneration and autosomal dominant retinitis pigmentosa (ADRP). Grp78/BiP is an ER-localized chaperone that is induced by UPR signaling in response to ER stress. We have previously demonstrated that BiP mRNA levels are selectively reduced in animal models of ADRP arising from P23H rhodopsin expression at ages that precede photoreceptor degeneration. We have now overexpressed BiP to test the hypothesis that this chaperone promotes the trafficking of P23H rhodopsin to the cell membrane, reprograms the UPR favoring the survival of photoreceptors, blocks apoptosis, and, ultimately, preserves vision in ADRP rats. In cell culture, increasing levels of BiP had no impact on the localization of P23H rhodopsin. However, BiP overexpression alleviated ER stress by reducing levels of cleaved pATF6 protein, phosphorylated eIF2α and the proapoptotic protein CHOP. In P23H rats, photoreceptor levels of cleaved ATF6, pEIF2α, CHOP, and caspase-7 were much higher than those of wild-type rats. Subretinal delivery of AAV5 expressing BiP to transgenic rats led to reduction in CHOP and photoreceptor apoptosis and to a sustained increase in electroretinogram amplitudes. We detected complexes between BiP, caspase-12, and the BH3-only protein BiK that may contribute to the antiapoptotic activity of BiP. Thus, the preservation of photoreceptor function resulting from elevated levels of BiP is due to suppression of apoptosis rather than to a promotion of rhodopsin folding.
机译:视紫红质基因(RHO)中的P23H突变导致视紫红质错误折叠,内质网(ER)应激,并激活未折叠的蛋白应答(UPR),导致视杆感光细胞变性和常染色体显性视网膜色素变性(ADRP)。 Grp78 / BiP是一种ER定位伴侣,由UPR信号转导以响应ER应激。我们以前已经证明,在P23H视紫红质表达引起的ADRP动物模型中,BiP mRNA水平在感光器变性之前的年龄中选择性降低。现在,我们已经过表达BiP,以验证这种分子伴侣促进P23H视紫红质向细胞膜运输的假设,对UPR进行重新编程,从而有利于光感受器的存活,阻止细胞凋亡,并最终保持ADRP大鼠的视力。在细胞培养中,BiP水平的提高对P23H视紫红质的定位没有影响。但是,BiP的过表达通过降低裂解的pATF6蛋白,磷酸化的eIF2α和促凋亡蛋白CHOP的水平来减轻内质网应激。在P23H大鼠中,裂解的ATF6,pEIF2α,CHOP和caspase-7的感光细胞水平远高于野生型大鼠。向转基因大鼠视网膜下表达AAV5的BiP的递送导致CHOP和感光细胞凋亡的减少,以及视网膜电图振幅的持续增加。我们检测到BiP,caspase-12和仅BH3蛋白BiK之间的复合物,这些复合物可能有助于BiP的抗凋亡活性。因此,BiP水平升高导致光感受器功能的保持是由于细胞凋亡的抑制而不是视紫红质折叠的促进。

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