Lei Bingkun, Zhou Nan, Guo Yuchen, Zhao Wenqi, Tan Yan-Wen, Yu Yao, Lu Hong
State Key Laboratory of Genetic Engineering, School of Life Sciences, and Institute of Biomedical Sciences, Shanghai 200433, China.
State Key Laboratory of Surface Physics and Department of Physics, Fudan University, Shanghai 200433, China.
J Cell Sci. 2014 Sep 15;127(Pt 18):4024-36. doi: 10.1242/jcs.151910. Epub 2014 Jul 11.
Accurate cell division requires the proper assembly of high-order septin structures. In fission yeast (Schizosaccharomyces pombe), Spn1-Spn4 are assembled into a primary septin ring at the division site, and the subsequent recruitment of Mid2 to the structure results in a stable septin ring. However, not much is known about the regulation of this key process. Here, we found that deletion of Spt20, a structural subunit of the Spt-Ada-Gcn5-acetyltransferase (SAGA) transcriptional activation complex, caused a severe cell separation defect. The defect was mainly due to impaired septin ring assembly, as 80% of spt20Δ cells lost septin rings at the division sites. Spt20 regulates septin ring assembly partially through the transcriptional activation of mid2(+). Spt20 also interacted with Spn2 and Mid2 in vitro and was associated with other components of the ring in vivo. Spt20 colocalized with the septin ring, but did not separate when the septin ring split. Importantly, Spt20 regulated the stability of the septin ring and was required for the recruitment of Mid2. The transcription-dependent and -independent roles of Spt20 in septin ring assembly highlight a multifaceted regulation of one process by a SAGA subunit.
精确的细胞分裂需要高阶隔膜蛋白结构的正确组装。在裂殖酵母(粟酒裂殖酵母)中,Spn1 - Spn4在分裂位点组装成初级隔膜蛋白环,随后Mid2募集到该结构上形成稳定的隔膜蛋白环。然而,对于这一关键过程的调控了解甚少。在此,我们发现Spt - Ada - Gcn5 - 乙酰转移酶(SAGA)转录激活复合物的结构亚基Spt20缺失会导致严重的细胞分离缺陷。该缺陷主要是由于隔膜蛋白环组装受损,因为80%的spt20Δ细胞在分裂位点失去了隔膜蛋白环。Spt20部分通过对mid2(+)的转录激活来调节隔膜蛋白环的组装。Spt20在体外还与Spn2和Mid2相互作用,在体内与环的其他组分相关联。Spt20与隔膜蛋白环共定位,但在隔膜蛋白环分裂时不分开。重要的是,Spt20调节隔膜蛋白环的稳定性,并且是Mid2募集所必需的。Spt20在隔膜蛋白环组装中依赖转录和不依赖转录的作用突出了SAGA亚基对一个过程的多方面调控。