Provance D William, James Ted L, Mercer John A
McLaughlin Research Institute, 1520 23rd St South, Great Falls, MT 59405, USA.
Traffic. 2002 Feb;3(2):124-32. doi: 10.1034/j.1600-0854.2002.030205.x.
The formation of complex subcellular organelles requires the coordinated targeting of multiple components. Melanosome biogenesis in mouse melanocytes is an excellent model system for studying the coordinated function of multiple gene products in intracellular trafficking. To begin to order events in melanosome biogenesis and distribution, we employed the classical coat-color mutants ashen, dilute, and leaden, which affect melanosome distribution, but not melanin synthesis. The loci have been renamed Rab27a, Myo5a, and Mlph for their gene products. While each of the three loci has been shown to be required for melanosome distribution, the point(s) at which each acts is unknown. We have utilized primary melanocytes to examine the interdependencies between rab27a, myosin-Va, and melanophilin. The localization of rab27a to melanosomes did not require the function of either myosin-Va or melanophilin, but leaden function was required for the association of myosin-Va with melanosomes. In leaden melanocytes permeabilized before fixation, myosin-Va immunoreactivity was greatly attenuated, suggesting that myosin-Va is free in the cytoplasm. Finally, we have complemented both the leaden and ashen phenotypes by cell fusion and observed redistribution of mature melanosomes in the absence of both protein and melanin synthesis. Together, our data suggest a model for the initial assembly of the machinery required for melanosome distribution.
复杂亚细胞器的形成需要多种组分的协同靶向运输。小鼠黑素细胞中的黑素小体生物合成是研究多种基因产物在细胞内运输中协同功能的极佳模型系统。为了梳理黑素小体生物合成和分布过程中的事件顺序,我们利用了经典的毛色突变体——灰白色、稀释和铅灰色,这些突变体影响黑素小体的分布,但不影响黑色素的合成。这些基因座因其基因产物已分别重新命名为Rab27a、Myo5a和Mlph。虽然已证明这三个基因座中的每一个对于黑素小体的分布都是必需的,但它们各自发挥作用的位点尚不清楚。我们利用原代黑素细胞来研究rab27a、肌球蛋白-Va和黑素亲和蛋白之间的相互依赖性。rab27a定位于黑素小体不需要肌球蛋白-Va或黑素亲和蛋白的功能,但肌球蛋白-Va与黑素小体的结合需要铅灰色蛋白的功能。在固定前进行通透处理的铅灰色黑素细胞中,肌球蛋白-Va的免疫反应性大大减弱,这表明肌球蛋白-Va在细胞质中是游离的。最后,我们通过细胞融合补充了铅灰色和灰白色的表型,并观察到在没有蛋白质和黑色素合成的情况下成熟黑素小体的重新分布。总之,我们的数据提出了一个黑素小体分布所需机制初始组装的模型。