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Mechanisms for Rescue of Correctable Folding Defects in CFTRΔF508

机译:CFTRΔF508中纠正可折叠缺陷的补救机制

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Premature degradation of CFTRΔF508 causes cystic fibrosis (CF). CFTRΔF508 folding defects are conditional and folding correctors are being developed as CF therapeutics. How the cellular environment impacts CFTRΔF508 folding efficiency and the identity of CFTRΔF508's correctable folding defects is unclear. We report that inactivation of the RMA1 or CHIP ubiquitin ligase permits a pool of CFTRΔF508 to escape the endoplasmic reticulum. Combined RMA1 or CHIP inactivation and Corr-4a treatment enhanced CFTRΔF508 folding to 3–7-fold greater levels than those elicited by Corr-4a. Some, but not all, folding defects in CFTRΔF508 are correctable. CHIP and RMA1 recognize different regions of CFTR and a large pool of nascent CFTRΔF508 is ubiquitinated by RMA1 before Corr-4a action. RMA1 recognizes defects in CFTRΔF508 related to misassembly of a complex that contains MSD1, NBD1, and the R-domain. Corr-4a acts on CFTRΔF508 after MSD2 synthesis and was ineffective at rescue of ΔF508 dependent folding defects in amino-terminal regions. In contrast, misfolding caused by the rare CF-causing mutation V232D in MSD1 was highly correctable by Corr-4a. Overall, correction of folding defects recognized by RMA1 and/or global modulation of ER quality control has the potential to increase CFTRΔF508 folding and provide a therapeutic approach for CF.
机译:CFTRΔF508的过早降解会导致囊性纤维化(CF)。 CFTRΔF508折叠缺陷是有条件的,并且折叠校正器正在开发为CF疗法。细胞环境如何影响CFTRΔF508的折叠效率以及CFTRΔF508可纠正的折叠缺陷的身份尚不清楚。我们报告说,RMA1或芯片泛素连接酶的失活允许CFTRΔF508池逃脱内质网。结合RMA1或CHIP灭活和Corr-4a处理可使CFTRΔF508折叠的水平比由Corr-4a引发的折叠高3至7倍。 CFTRΔF508中的一些但不是全部折叠缺陷是可以纠正的。 CHIP和RMA1识别CFTR的不同区域,并且在Corr-4a作用之前,大量新生的CFTRΔF508被RMA1泛素化。 RMA1识别CFTRΔF508中与包含MSD1,NBD1和R域的复合体的错误组装有关的缺陷。 Corr-4a在MSD2合成后作用于CFTRΔF508,对挽救氨基末端区域中依赖ΔF508的折叠缺陷无效。相比之下,Corr-4a可以高度纠正MSD1中由CF引起的罕见CF突变V232D引起的错折叠。总体而言,通过RMA1识别的折叠缺陷的纠正和/或ER质量控制的整体调节可能会增加CFTRΔF508折叠并为CF提供治疗方法。

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