Walenta J H, Didier A J, Liu X, Krämer H
Center for Basic Neuroscience and Department of Cell Biology, University of Texas Southwestern Medical Center, Dallas, Texas 75390, USA.
J Cell Biol. 2001 Mar 5;152(5):923-34. doi: 10.1083/jcb.152.5.923.
Microtubules are central to the spatial organization of diverse membrane-trafficking systems. Here, we report that Hook proteins constitute a novel family of cytosolic coiled coil proteins that bind to organelles and to microtubules. The conserved NH(2)-terminal domains of Hook proteins mediate attachment to microtubules, whereas the more divergent COOH-terminal domains mediate the binding to organelles. Human Hook3 bound to Golgi membranes in vitro and was enriched in the cis-Golgi in vivo. Unlike other cis-Golgi-associated proteins, however, a large fraction of Hook3 maintained its juxtanuclear localization after Brefeldin A treatment, indicating a Golgi-independent mechanism for Hook3 localization. Because overexpression of Hook3 caused fragmentation of the Golgi complex, we propose that Hook3 participates in defining the architecture and localization of the mammalian Golgi complex.
微管对于多种膜运输系统的空间组织至关重要。在此,我们报告Hook蛋白构成了一类新型的胞质卷曲螺旋蛋白家族,其可与细胞器和微管结合。Hook蛋白保守的NH₂末端结构域介导与微管的附着,而差异较大的COOH末端结构域介导与细胞器的结合。人Hook3在体外与高尔基体膜结合,且在体内富集于顺面高尔基体。然而,与其他顺面高尔基体相关蛋白不同,在布雷菲德菌素A处理后,很大一部分Hook3仍保持其近核定位,这表明Hook3的定位存在一种不依赖高尔基体的机制。由于Hook3的过表达导致高尔基体复合体碎片化,我们提出Hook3参与确定哺乳动物高尔基体复合体的结构和定位。