Department of Developmental and Molecular Biology, Albert Einstein College of Medicine, Bronx, NY, USA.
FASEB J. 2012 Jan;26(1):129-36. doi: 10.1096/fj.10-167684. Epub 2011 Sep 29.
During the G2-M transition, the highly organized Golgi apparatus undergoes reversible fragmentation through unstacking of the cisternal ribbon and disassembly into radially dispersed vesicles and tubules. These Golgi-derived fragments redistribute randomly within the cytoplasm, partition stochastically, and in telophase coalesce to generate a functionally and structurally intact Golgi complex. Here we identified a novel step in postmitotic Golgi reassembly that requires the clathrin heavy chain (CHC). We used siRNA-mediated CHC knockdown, biochemistry, and morphological analysis and showed that the spindle- and spindle pole-associated clathrin pools are membrane-bound and required for postmitotic Golgi reassembly. The results presented here show that clathrin remains associated with the spindle poles throughout mitosis and that this clathrin pool is distinct from the previously characterized spindle-associated population. We suggest that clathrin may provide a template for postmitotic Golgi reassembly and cisternal remodeling. In absence of the CHC, the Golgi apparatus remained disconnected and disordered and failed to regain its characteristic perinuclear, lace-like morphology. Our findings build on previous independent reports that clathrin is required for Golgi reassembly following disruption with pharmacological agents and for mitotic chromosome congression.
在 G2-M 转换期间,高度组织化的高尔基体通过顺面管网带的解堆叠和分解为径向分散的小泡和小管而发生可逆碎片化。这些来源于高尔基体的片段在细胞质中随机重新分布,随机分配,在末期融合生成一个功能和结构完整的高尔基体复合物。在这里,我们确定了有丝分裂后高尔基体重装配的一个新步骤,该步骤需要网格蛋白重链 (CHC)。我们使用 siRNA 介导的 CHC 敲低、生物化学和形态分析表明,纺锤体和纺锤体极相关的网格蛋白池是膜结合的,并且是有丝分裂后高尔基体重装配所必需的。这里呈现的结果表明,网格蛋白在整个有丝分裂过程中仍然与纺锤体极相关联,并且该网格蛋白池与之前表征的纺锤体相关群体不同。我们认为,网格蛋白可能为有丝分裂后高尔基体的重装配和腔室重塑提供模板。在没有 CHC 的情况下,高尔基体仍然处于分离和无序状态,无法恢复其特征性的核周、花边样形态。我们的发现建立在之前的独立报告的基础上,即网格蛋白对于用药理学试剂破坏后高尔基体的重装配以及有丝分裂染色体的向心移动是必需的。