Department of Applied Biological Science, Tokyo University of Science, Noda, Japan.
Department of Biological Sciences, Osaka University, Toyonaka, Japan.
Nat Plants. 2022 Aug;8(8):940-953. doi: 10.1038/s41477-022-01200-3. Epub 2022 Aug 1.
The arrangement of centromeres within the nucleus differs among species and cell types. However, neither the mechanisms determining centromere distribution nor its biological significance are currently well understood. In this study, we demonstrate the importance of centromere distribution for the maintenance of genome integrity through the cytogenic and molecular analysis of mutants defective in centromere distribution. We propose a two-step regulatory mechanism that shapes the non-Rabl-like centromere distribution in Arabidopsis thaliana through condensin II and the linker of the nucleoskeleton and cytoskeleton (LINC) complex. Condensin II is enriched at centromeres and, in cooperation with the LINC complex, induces the scattering of centromeres around the nuclear periphery during late anaphase/telophase. After entering interphase, the positions of the scattered centromeres are then stabilized by nuclear lamina proteins of the CROWDED NUCLEI (CRWN) family. We also found that, despite their strong impact on centromere distribution, condensin II and CRWN proteins have little effect on chromatin organization involved in the control of gene expression, indicating a robustness of chromatin organization regardless of the type of centromere distribution.
着丝粒在核内的排列在不同物种和细胞类型中存在差异。然而,目前对于决定着丝粒分布的机制及其生物学意义还了解甚少。在这项研究中,我们通过对着丝粒分布缺陷的突变体进行细胞遗传学和分子分析,证明了着丝粒分布对于维持基因组完整性的重要性。我们提出了一个两步调控机制,通过凝聚素 II 和核骨架-细胞质连接(LINC)复合物来塑造拟南芥中非 Rabl 样的着丝粒分布。凝聚素 II 在着丝粒处富集,并与 LINC 复合物合作,在后期有丝分裂/末期诱导着丝粒在核周周围散射。进入间期末期后,散射着丝粒的位置随后被拥挤核(CRWN)家族的核纤层蛋白稳定。我们还发现,尽管凝聚素 II 和 CRWN 蛋白对着丝粒分布有很大影响,但它们对参与基因表达调控的染色质组织几乎没有影响,这表明无论着丝粒分布类型如何,染色质组织都具有很强的稳健性。