Dalal Kush, Nguyen Nham, Alami Meriem, Tan Jennifer, Moraes Trevor F, Lee Woo Cheol, Maurus Robert, Sligar Stephen S, Brayer Gary D, Duong Franck
Department of Biochemistry and Molecular Biology, University of British Columbia, Vancouver, British Columbia V6T1Z3, Canada.
J Biol Chem. 2009 Mar 20;284(12):7897-902. doi: 10.1074/jbc.M808305200. Epub 2009 Jan 12.
The Syd protein has been implicated in the Sec-dependent transport of polypeptides across the bacterial inner membrane. Using Nanodiscs, we here provide direct evidence that Syd binds the SecY complex, and we demonstrate that interaction involves the two electropositive and cytosolic loops of the SecY subunit. We solve the crystal structure of Syd and together with cysteine cross-link analysis, we show that a conserved concave and electronegative groove constitutes the SecY-binding site. At the membrane, Syd decreases the activity of the translocon containing loosely associated SecY-SecE subunits, whereas in detergent solution Syd disrupts the SecYEG heterotrimeric associations. These results support the role of Syd in proofreading the SecY complex biogenesis and point to the electrostatic nature of the Sec channel interaction with its cytosolic partners.
Syd蛋白与细菌内膜上依赖Sec的多肽转运有关。利用纳米圆盘,我们在此提供了Syd与SecY复合物结合的直接证据,并证明这种相互作用涉及SecY亚基的两个带正电的胞质环。我们解析了Syd的晶体结构,并结合半胱氨酸交联分析表明,一个保守的凹形带负电的凹槽构成了SecY结合位点。在膜上,Syd降低了含有松散结合的SecY-SecE亚基的转运体的活性,而在去污剂溶液中,Syd破坏了SecYEG异源三聚体的结合。这些结果支持了Syd在校正SecY复合物生物合成中的作用,并指出了Sec通道与其胞质伴侣相互作用的静电性质。