Muchardt C, Reyes J C, Bourachot B, Leguoy E, Yaniv M
Unité des Virus Oncogènes, UA1644 du CNRS, Département des Biotechnologies, Institut Pasteur, Paris, France.
EMBO J. 1996 Jul 1;15(13):3394-402.
In yeast, the SNF/SWI complex is believed to regulate transcription by locally altering the chromatin structure. At the present time, three human homologues of yeast SNF/SWI proteins have been characterized: hbrm and BRG-1, homologues of SNF2/SWI2, and hSNF5, a homologue of SNF5. We show here that, during mitosis, hbrm and BRG-1 are phosphorylated and excluded from the condensed chromosomes. In this phase of the cell cycle, the level of hbrm protein is also strongly reduced, whereas the level of BRG-1 remains constant. The mitotic phosphorylation of hbrm and BRG-1 is found not to disrupt the association of these proteins with hSNF5 but correlates with a decreased affinity for the nuclear structure in early M phase. We suggest that chromosomal exclusion of the human SNF/SWI complex at the G2-M transition could be part of the mechanism leading to transcriptional arrest during mitosis.
在酵母中,SNF/SWI复合物被认为通过局部改变染色质结构来调节转录。目前,已鉴定出酵母SNF/SWI蛋白的三种人类同源物:hbrm和BRG-1,它们是SNF2/SWI2的同源物,以及hSNF5,它是SNF5的同源物。我们在此表明,在有丝分裂期间,hbrm和BRG-1会被磷酸化并从浓缩染色体中排除。在细胞周期的这个阶段,hbrm蛋白水平也会大幅降低,而BRG-1的水平保持不变。发现hbrm和BRG-1的有丝分裂磷酸化不会破坏这些蛋白与hSNF5的结合,但与M期早期对核结构的亲和力降低相关。我们认为,在G2-M期转变时人类SNF/SWI复合物从染色体上排除可能是导致有丝分裂期间转录停滞的机制的一部分。