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首页> 外文期刊>Autophagy >The ciliary protein RPGRIP1L governs autophagy independently of its proteasome-regulating function at the ciliary base in mouse embryonic fibroblasts
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The ciliary protein RPGRIP1L governs autophagy independently of its proteasome-regulating function at the ciliary base in mouse embryonic fibroblasts

机译:睫状蛋白RPGRIP1L独立地在小鼠胚胎成纤维细胞的睫状碱上独立地治疗自噬

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摘要

Previously, macroautophagy/autophagy was demonstrated to be regulated inter alia by the primary cilium. Mutations in RPGRIP1L cause ciliary dysfunctions resulting in severe human diseases summarized as ciliopathies. Recently, we showed that RPGRIP1L deficiency leads to a decreased proteasomal activity at the ciliary base in mice. Importantly, the drug-induced restoration of proteasomal activity does not rescue ciliary length alterations in the absence of RPGRIP1L indicating that RPGRIP1L affects ciliary function also via other mechanisms. Based on this knowledge, we analyzed autophagy in Rpgrip1l-negative mouse embryos. In these embryos, autophagic activity was decreased due to an increased activation of the MTOR complex 1 (MTORC1). Application of the MTORC1 inhibitor rapamycin rescued dysregulated MTORC1, autophagic activity and cilia length but not proteasomal activity in Rpgrip1l-deficient mouse embryonic fibroblasts demonstrating that RPGRIP1L seems to regulate autophagic and proteasomal activity independently from each other.
机译:以前,证明杂种植物/自噬尤其是由初级纤毛制备的。 RPGRIP1L中的突变导致睫状体功能障碍导致严重的人类疾病总结为纤毛病。最近,我们表明RPGRIP1L缺乏导致小鼠睫状碱的蛋白酶体活性降低。重要的是,在不存在RPGRIP1L的情况下,药物诱导的蛋白酶体活性的恢复不会拯救睫状长度改变,表明RPGRIP1L也通过其他机制影响睫状体功能。基于这种知识,我们在RPGRIP1L阴性鼠标胚胎中分析了自噬。在这些胚胎中,由于MTOR复合物1(MTORC1)的激活增加,减少了自噬活性活性。 MTORC1抑制剂雷帕霉素的应用救出了呼吸困难的MTORC1,自噬激活和纤毛的长度,但不是RPGRIP1L缺陷小鼠胚胎成纤维细胞中的蛋白酶体活性证明RPGRIP1L似乎彼此独立地调节自噬和蛋白酶体活性。

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