Laboratory of Chemistry and Cell Biology, The Rockefeller University , New York, NY, USA.
Tri-Institutional PhD Program in Chemical Biology, The Rockefeller University , New York, NY, USA.
J Cell Biol. 2023 Mar 6;222(3). doi: 10.1083/jcb.202204102. Epub 2023 Jan 25.
The γ-tubulin ring complex (γ-TuRC) has essential roles in centrosomal and non-centrosomal microtubule organization during vertebrate mitosis. While there have been important advances in understanding γ-TuRC-dependent microtubule nucleation, γ-TuRC capping of microtubule minus-ends remains poorly characterized. Here, we utilized biochemical reconstitutions and cellular assays to characterize the human γ-TuRC's capping activity. Single filament assays showed that the γ-TuRC remained associated with a nucleated microtubule for tens of minutes. In contrast, caps at dynamic microtubule minus-ends displayed lifetimes of ∼1 min. Reconstituted γ-TuRCs with nucleotide-binding deficient γ-tubulin (γ-tubulinΔGTP) formed ring-shaped complexes that did not nucleate microtubules but capped microtubule minus-ends with lifetimes similar to those measured for wild-type complexes. In dividing cells, microtubule regrowth assays revealed that while knockdown of γ-tubulin suppressed non-centrosomal microtubule formation, add-back of γ-tubulinΔGTP could substantially restore this process. Our results suggest that γ-TuRC capping is a nucleotide-binding-independent activity that plays a role in non-centrosomal microtubule organization during cell division.
γ-微管蛋白环复合物(γ-TuRC)在脊椎动物有丝分裂过程中对中心体和非中心体微管组织具有重要作用。虽然在理解γ-TuRC 依赖性微管核形成方面已经取得了重要进展,但γ-TuRC 对微管负端的盖帽作用仍未得到很好的描述。在这里,我们利用生化重建和细胞测定来表征人类 γ-TuRC 的盖帽活性。单丝测定表明,γ-TuRC 与已核的微管结合长达数十分钟。相比之下,在动态微管负端的帽状结构的寿命约为 1 分钟。具有核苷酸结合缺陷的γ-微管蛋白(γ-tubulinΔGTP)的重组 γ-TuRC 形成了环形复合物,这些复合物不能核化微管,但帽状结构的微管负端的寿命与野生型复合物的测量结果相似。在分裂细胞中,微管再生测定表明,尽管敲低γ-微管蛋白会抑制非中心体微管的形成,但添加 γ-tubulinΔGTP 可以大大恢复这一过程。我们的结果表明,γ-TuRC 盖帽是一种不依赖核苷酸结合的活性,在细胞分裂中非中心体微管组织中发挥作用。