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Rab27a基因的突变导致了在灰白色小鼠中观察到的囊泡运输缺陷。

A mutation in Rab27a causes the vesicle transport defects observed in ashen mice.

作者信息

Wilson S M, Yip R, Swing D A, O'Sullivan T N, Zhang Y, Novak E K, Swank R T, Russell L B, Copeland N G, Jenkins N A

机构信息

Mouse Cancer Genetics Program, National Cancer Institute-Frederick Cancer Research and Development Center, Frederick, MD 21702, USA.

出版信息

Proc Natl Acad Sci U S A. 2000 Jul 5;97(14):7933-8. doi: 10.1073/pnas.140212797.

Abstract

The dilute (d), leaden (ln), and ashen (ash) mutations provide a unique model system for studying vesicle transport in mammals. All three mutations produce a lightened coat color because of defects in pigment granule transport. In addition, all three mutations are suppressed by the semidominant dilute-suppressor (dsu), providing genetic evidence that these mutations function in the same or overlapping transport pathways. Previous studies showed that d encodes a major vesicle transport motor, myosin-VA, which is mutated in Griscelli syndrome patients. Here, using positional cloning and bacterial artificial chromosome rescue, we show that ash encodes Rab27a. Rab GTPases represent the largest branch of the p21 Ras superfamily and are recognized as key players in vesicular transport and organelle dynamics in eukaryotic cells. We also show that ash mice have platelet defects resulting in increased bleeding times and a reduction in the number of platelet dense granules. These defects have not been reported for d and ln mice. Collectively, our studies identify Rab27a as a critical gene for organelle-specific protein trafficking in melanocytes and platelets and suggest that Rab27a functions in both MyoVa dependent and independent pathways.

摘要

稀释(d)、铅灰(ln)和灰白色(ash)突变提供了一个用于研究哺乳动物囊泡运输的独特模型系统。由于色素颗粒运输缺陷,这三种突变都会导致毛色变浅。此外,这三种突变都被半显性稀释抑制基因(dsu)抑制,这提供了遗传证据,表明这些突变在相同或重叠的运输途径中起作用。先前的研究表明,d编码一种主要的囊泡运输马达——肌球蛋白-VA,在格里塞利综合征患者中该基因发生了突变。在此,我们通过定位克隆和细菌人工染色体拯救技术表明,ash编码Rab27a。Rab GTP酶是p21 Ras超家族中最大的一个分支,被认为是真核细胞中囊泡运输和细胞器动态变化的关键参与者。我们还表明,ash小鼠存在血小板缺陷,导致出血时间延长和血小板致密颗粒数量减少。d和ln小鼠尚未报道有这些缺陷。总的来说,我们的研究确定Rab27a是黑素细胞和血小板中细胞器特异性蛋白质运输的关键基因,并表明Rab27a在依赖和不依赖肌球蛋白-VA的途径中均发挥作用。

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