Van den Berg Bert, Clemons William M, Collinson Ian, Modis Yorgo, Hartmann Enno, Harrison Stephen C, Rapoport Tom A
Howard Hughes Medical Institute and Department of Cell Biology, Harvard Medical School, 240 Longwood Avenue, Boston, Massachusetts 02115, USA.
Nature. 2004 Jan 1;427(6969):36-44. doi: 10.1038/nature02218. Epub 2003 Dec 3.
A conserved heterotrimeric membrane protein complex, the Sec61 or SecY complex, forms a protein-conducting channel, allowing polypeptides to be transferred across or integrated into membranes. We report the crystal structure of the complex from Methanococcus jannaschii at a resolution of 3.2 A. The structure suggests that one copy of the heterotrimer serves as a functional translocation channel. The alpha-subunit has two linked halves, transmembrane segments 1-5 and 6-10, clamped together by the gamma-subunit. A cytoplasmic funnel leading into the channel is plugged by a short helix. Plug displacement can open the channel into an 'hourglass' with a ring of hydrophobic residues at its constriction. This ring may form a seal around the translocating polypeptide, hindering the permeation of other molecules. The structure also suggests mechanisms for signal-sequence recognition and for the lateral exit of transmembrane segments of nascent membrane proteins into lipid, and indicates binding sites for partners that provide the driving force for translocation.
一种保守的异源三聚体膜蛋白复合物,即Sec61或SecY复合物,形成一个蛋白质传导通道,使多肽能够跨膜转运或整合到膜中。我们报道了嗜压甲烷球菌复合物的晶体结构,分辨率为3.2埃。该结构表明,异源三聚体的一个拷贝作为一个功能性易位通道。α亚基有两个相连的部分,跨膜片段1 - 5和6 - 10,由γ亚基夹在一起。一个通向通道的胞质漏斗被一个短螺旋堵塞。堵塞物的移位可使通道打开成一个“沙漏”状,在其狭窄处有一圈疏水残基。这个环可能在转运的多肽周围形成一个密封,阻碍其他分子的渗透。该结构还提示了信号序列识别以及新生膜蛋白跨膜片段侧向进入脂质的机制,并指出了为易位提供驱动力的伙伴的结合位点。