Xu Ying, Takeda Sen, Nakata Takao, Noda Yasuko, Tanaka Yosuke, Hirokawa Nobutaka
Department of Cell Biology and Anatomy, Graduate School of Medicine, University of Tokyo, 7-3-1 Hongo, Tokyo 113-0033, Japan.
J Cell Biol. 2002 Jul 22;158(2):293-303. doi: 10.1083/jcb.200202058.
KIFC3, a microtubule (MT) minus end-directed kinesin superfamily protein, is expressed abundantly and is associated with the Golgi apparatus in adrenocortical cells. We report here that disruption of the kifC3 gene induced fragmentation of the Golgi apparatus when cholesterol was depleted. Analysis of the reassembly process of the Golgi apparatus revealed bidirectional movement of the Golgi fragments in both wild-type and kifC3-/- cells. However, we observed a markedly reduced inwardly directed motility of the Golgi fragments in cholesterol-depleted kifC3-/- cells compared with either cholesterol-depleted wild-type cells or cholesterol-replenished kifC3-/- cells. These results suggest that (a) under the cholesterol-depleted condition, reduced inwardly directed motility of the Golgi apparatus results in the observed Golgi scattering phenotype in kifC3-/- cells, and (b) cholesterol is necessary for the Golgi fragments to attain sufficient inwardly directed motility by MT minus end-directed motors other than KIFC3, such as dynein, in kifC3-/- cells. Furthermore, we showed that Golgi scattering was much more drastic in kifC3-/- cells than in wild-type cells to the exogenous dynamitin expression even in the presence of cholesterol. These results collectively demonstrate that KIFC3 plays a complementary role in Golgi positioning and integration with cytoplasmic dynein.
KIFC3是一种微管(MT)负端定向驱动蛋白超家族蛋白,在肾上腺皮质细胞中大量表达并与高尔基体相关。我们在此报告,当胆固醇耗竭时,kifC3基因的破坏会导致高尔基体碎片化。对高尔基体重新组装过程的分析显示,在野生型和kifC3 -/- 细胞中高尔基体片段都有双向移动。然而,我们观察到,与胆固醇耗竭的野生型细胞或胆固醇补充后的kifC3 -/- 细胞相比,胆固醇耗竭的kifC3 -/- 细胞中高尔基体片段向内的运动性明显降低。这些结果表明:(a)在胆固醇耗竭的条件下,高尔基体向内运动性降低导致在kifC3 -/- 细胞中观察到的高尔基体分散表型;(b)胆固醇对于kifC3 -/- 细胞中高尔基体片段通过KIFC3以外的MT负端定向马达(如动力蛋白)获得足够的向内运动性是必要的。此外,我们还表明,即使在存在胆固醇的情况下,kifC3 -/- 细胞对外源发动蛋白表达的高尔基体分散比野生型细胞更剧烈。这些结果共同证明,KIFC3在高尔基体定位以及与细胞质动力蛋白的整合中起互补作用。