Graduate School of Health Sciences, Ehime Prefectural University of Health Sciences, Ehime, Japan.
Graduate School of Medicine and Health Science, Osaka University, Osaka, Japan.
PLoS One. 2023 Jul 12;18(7):e0283490. doi: 10.1371/journal.pone.0283490. eCollection 2023.
Cell motility is related to the higher-order structure of chromatin. Stimuli that induce cell migration change chromatin organization; such stimuli include elevated histone H3 lysine 9 trimethylation (H3K9me3). We previously showed that depletion of histone H3 lysine 9 methyltransferase, SUV39H1, suppresses directional cell migration. However, the molecular mechanism underlying this association between chromatin and cell migration remains elusive. The Golgi apparatus is a cell organelle essential for cell motility. In this study, we show that loss of H3K9 methyltransferase SUV39H1 but not SETDB1 or SETDB2 causes dispersion of the Golgi apparatus throughout the cytoplasm. The Golgi dispersion triggered by SUV39H1 depletion is independent of transcription, centrosomes, and microtubule organization, but is suppressed by depletion of any of the following three proteins: LINC complex components SUN2, nesprin-2, or microtubule plus-end-directed kinesin-like protein KIF20A. In addition, SUN2 is closely localized to H3K9me3, and SUV39H1 affects the mobility of SUN2 in the nuclear envelope. Further, inhibition of cell motility caused by SUV39H1 depletion is restored by suppression of SUN2, nesprin-2, or KIF20A. In summary, these results show the functional association between chromatin organization and cell motility via the Golgi organization regulated by the LINC complex.
细胞迁移与染色质的高级结构有关。诱导细胞迁移的刺激会改变染色质组织;这种刺激包括组蛋白 H3 赖氨酸 9 三甲基化(H3K9me3)的升高。我们之前曾表明,组蛋白 H3 赖氨酸 9 甲基转移酶 SUV39H1 的耗竭会抑制细胞的定向迁移。然而,染色质与细胞迁移之间的这种关联的分子机制仍然难以捉摸。高尔基体是细胞运动所必需的细胞器。在这项研究中,我们表明,H3K9 甲基转移酶 SUV39H1 的缺失而不是 SETDB1 或 SETDB2 会导致高尔基体在整个细胞质中分散。SUV39H1 耗竭引发的高尔基体分散不依赖于转录、中心体和微管组织,但会被以下三种蛋白质中的任何一种的耗竭所抑制:LINC 复合物成分 SUN2、nesprin-2 或微管末端指向的驱动蛋白样蛋白 KIF20A。此外,SUN2 与 H3K9me3 紧密定位,SUV39H1 影响 SUN2 在核膜中的流动性。此外,SUV39H1 耗竭引起的细胞迁移抑制可通过抑制 SUN2、nesprin-2 或 KIF20A 来恢复。总之,这些结果表明,通过 LINC 复合物调节的高尔基体组织,染色质组织与细胞迁移之间存在功能关联。