Musial-Siwek Monika, Kendall Debra A, Yeagle Philip L
Department of Molecular and Cell Biology, The University of Connecticut, Storrs, CT 06269, USA.
Biochim Biophys Acta. 2008 Apr;1778(4):937-44. doi: 10.1016/j.bbamem.2007.11.013. Epub 2007 Dec 14.
Useful solution nuclear magnetic resonance (NMR) data can be obtained from full-length, enzymatically active type I signal peptidase (SPase I), an integral membrane protein, in detergent micelles. Signal peptidase has two transmembrane segments, a short cytoplasmic loop, and a 27-kD C-terminal catalytic domain. It is a critical component of protein transport systems, recognizing and cleaving amino-terminal signal peptides from preproteins during the final stage of their export. Its structure and interactions with the substrate are of considerable interest, but no three-dimensional structure of the whole protein has been reported. The structural analysis of intact membrane proteins has been challenging and only recently has significant progress been achieved using NMR to determine membrane protein structure. Here we employ NMR spectroscopy to study the structure of the full-length SPase I in dodecylphosphocholine detergent micelles. HSQC-TROSY spectra showed resonances corresponding to approximately 3/4 of the 324 residues in the protein. Some sequential assignments were obtained from the 3D HNCACB, 3D HNCA, and 3D HN(CO) TROSY spectra of uniformly 2H, 13C, 15N-labeled full-length SPase I. The assigned residues suggest that the observed spectrum is dominated by resonances arising from extramembraneous portions of the protein and that the transmembrane domain is largely absent from the spectra. Our work elucidates some of the challenges of solution NMR of large membrane proteins in detergent micelles as well as the future promise of these kinds of studies.
在去污剂胶束中,可以从全长、具有酶活性的I型信号肽酶(SPase I,一种整合膜蛋白)获得有用的溶液核磁共振(NMR)数据。信号肽酶有两个跨膜区段、一个短的胞质环和一个27-kD的C端催化结构域。它是蛋白质转运系统的关键组成部分,在蛋白质前体输出的最后阶段识别并从其氨基末端信号肽上切割下来。其结构以及与底物的相互作用备受关注,但尚未报道过整个蛋白质的三维结构。完整膜蛋白的结构分析一直具有挑战性,直到最近利用核磁共振来确定膜蛋白结构才取得了显著进展。在这里,我们采用核磁共振光谱法研究全长SPase I在十二烷基磷酸胆碱去污剂胶束中的结构。HSQC-TROSY光谱显示出与该蛋白质中324个残基中约3/4相对应的共振信号。从均匀2H、13C、15N标记的全长SPase I的3D HNCACB、3D HNCA和3D HN(CO) TROSY光谱中获得了一些序列归属。已归属的残基表明,观察到的光谱主要由蛋白质膜外部分产生的共振信号主导,并且光谱中基本上没有跨膜结构域的信号。我们的工作阐明了在去污剂胶束中对大型膜蛋白进行溶液核磁共振研究的一些挑战以及这类研究的未来前景。