Üretmen Kagıalı Zeynep Cansu, Şentürk Aydanur, Özkan Küçük Nazlı Ezgi, Qureshi Mohammad Haroon, Özlü Nurhan
Department of Molecular Biology and Genetics, Koç University, Istanbul, Turkey.
Biomedical Sciences and Engineering, Koç University, Istanbul, Turkey.
Proteomics. 2017 Oct;17(20). doi: 10.1002/pmic.201600100. Epub 2017 Sep 4.
Cell division requires a coordinated action of the cell cycle machinery, cytoskeletal elements, chromosomes, and membranes. Cell division studies have greatly benefitted from the mass spectrometry (MS)-based proteomic approaches for probing the biochemistry of highly dynamic complexes and their coordination with each other as a cell progresses into division. In this review, the authors first summarize a wide-range of proteomic studies that focus on the identification of sub-cellular components/protein complexes of the cell division machinery including kinetochores, mitotic spindle, midzone, and centrosomes. The authors also highlight MS-based large-scale analyses of the cellular components that are largely understudied during cell division such as the cell surface and lipids. Then, the authors focus on posttranslational modification analyses, especially phosphorylation and the resulting crosstalk with other modifications as a cell undergoes cell division. Combining proteomic approaches that probe the biochemistry of cell division components with functional genomic assays will lead to breakthroughs toward a systems-level understanding of cell division.
细胞分裂需要细胞周期机制、细胞骨架成分、染色体和细胞膜的协同作用。细胞分裂研究极大地受益于基于质谱(MS)的蛋白质组学方法,这些方法用于探究高度动态复合物的生物化学及其在细胞进入分裂过程中彼此之间的协调。在本综述中,作者首先总结了一系列蛋白质组学研究,这些研究专注于鉴定细胞分裂机制的亚细胞成分/蛋白质复合物,包括动粒、有丝分裂纺锤体、中间区和中心体。作者还强调了基于MS的对细胞分裂过程中研究较少的细胞成分(如细胞表面和脂质)的大规模分析。然后,作者专注于翻译后修饰分析,特别是磷酸化以及细胞进行细胞分裂时与其他修饰产生的相互作用。将探究细胞分裂成分生物化学的蛋白质组学方法与功能基因组分析相结合,将在系统水平理解细胞分裂方面取得突破。