Jani Divyang, Lutz Sheila, Marshall Neil J, Fischer Tamás, Köhler Alwin, Ellisdon Andrew M, Hurt Ed, Stewart Murray
MRC Laboratory of Molecular Biology, Hills Road, Cambridge CB2 0QH, UK.
Mol Cell. 2009 Mar 27;33(6):727-37. doi: 10.1016/j.molcel.2009.01.033.
The yeast Sac3:Cdc31:Sus1:Thp1 (TREX-2) complex facilitates the repositioning and association of actively transcribing genes with nuclear pores (NPCs)-"gene gating"-that is central to integrating transcription, processing, and mRNA nuclear export. We present here the crystal structure of Sus1 and Cdc31 bound to a central region of Sac3 (the CID domain) that is crucial for its function. Sac3(CID) forms a long, gently undulating alpha helix around which one Cdc31 and two Sus1 chains are wrapped. Sus1 has an articulated helical hairpin fold that facilitates its wrapping around Sac3. In vivo studies using engineered mutations that selectively disrupted binding of individual chains to Sac3 indicated that Sus1 and Cdc31 function synergistically to promote NPC association of TREX-2 and mRNA nuclear export. These data indicate Sac3(CID) provides a scaffold within TREX-2 to integrate interactions between protein complexes to facilitate the coupling of transcription and mRNA export during gene expression.
酵母Sac3:Cdc31:Sus1:Thp1(TREX-2)复合物促进了活跃转录基因与核孔(NPC)的重新定位和结合——“基因门控”,这对于整合转录、加工和mRNA核输出至关重要。我们在此展示了与Sac3中心区域(CID结构域)结合的Sus1和Cdc31的晶体结构,该区域对其功能至关重要。Sac3(CID)形成一个长的、轻微起伏的α螺旋,一条Cdc31和两条Sus1链围绕其缠绕。Sus1具有一个铰接的螺旋发夹折叠结构,便于其围绕Sac3缠绕。使用工程突变进行的体内研究选择性地破坏了单个链与Sac3的结合,结果表明Sus1和Cdc31协同发挥作用,促进TREX-2与NPC的结合以及mRNA的核输出。这些数据表明,Sac3(CID)在TREX-2内提供了一个支架,以整合蛋白质复合物之间的相互作用,从而在基因表达过程中促进转录和mRNA输出的偶联。