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囊性纤维化跨膜传导调节因子的成熟需要巴弗洛霉素A1敏感途径。

Bafilomycin A1-sensitive pathway is required for the maturation of cystic fibrosis transmembrane conductance regulator.

作者信息

Okiyoneda Tsukasa, Niibori Akiko, Harada Kazutsune, Kohno Taijun, Hashimoto Yasuaki, Kusuhara Hiroyuki, Takada Tappei, Shuto Tsuyoshi, Suico Mary Ann, Sugiyama Yuichi, Kai Hirofumi

机构信息

Department of Molecular Medicine, Faculty of Medical and Pharmaceutical Sciences, Kumamoto University, Kumamoto 862-0973, Japan.

出版信息

Biochim Biophys Acta. 2006 Oct;1763(10):1017-23. doi: 10.1016/j.bbamcr.2006.08.032. Epub 2006 Aug 26.

Abstract

Cystic fibrosis (CF) is the most common lethal genetic disease in Caucasians caused by the trafficking defects of CF transmembrane conductance regulator (CFTR), which is a cAMP-dependent Cl- channel at the plasma membrane. The trafficking pathway of CFTR is thought to be non-conventional because CFTR maturation is inhibited by the dysfunction of syntaxin 13, which is involved in protein recycling via endosomal pathway. In this study, to clarify whether the endosomal trafficking is required for CFTR maturation, we utilized a specific vacuolar H+-ATPase inhibitor, bafilomycin A1 (BafA1), which inhibits the protein trafficking from early endosome. Our data showed that low concentration of BafA1 (50 nM) decreased the expression of mature CFTR but induced the accumulation of immature CFTR in the juxta-nuclear region containing an early endosome marker. Pulse-chase analysis showed that BafA1 inhibited the maturation of CFTR, but it slightly stabilized immature CFTR. These results indicate that BafA1-sensitive pathway is required for CFTR maturation and emphasize that endosomal trafficking pathway might be involved in the maturation of CFTR.

摘要

囊性纤维化(CF)是白种人中最常见的致死性遗传疾病,由CF跨膜传导调节因子(CFTR)的转运缺陷引起,CFTR是质膜上一种依赖cAMP的氯离子通道。CFTR的转运途径被认为是非传统的,因为CFTR的成熟受到 syntaxin 13功能障碍的抑制,syntaxin 13通过内体途径参与蛋白质循环。在本研究中,为了阐明CFTR成熟是否需要内体转运,我们使用了一种特异性液泡H⁺-ATP酶抑制剂巴弗洛霉素A1(BafA1),它抑制从早期内体的蛋白质转运。我们的数据表明,低浓度的BafA1(50 nM)降低了成熟CFTR的表达,但诱导了未成熟CFTR在含有早期内体标记物的近核区域的积累。脉冲追踪分析表明,BafA1抑制CFTR的成熟,但它略微稳定了未成熟的CFTR。这些结果表明,BafA1敏感途径是CFTR成熟所必需的,并强调内体转运途径可能参与CFTR的成熟。

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