Kochendoerfer Gerd G, Jones David H, Lee Sangwon, Oblatt-Montal Myrta, Opella Stanley J, Montal Mauricio
Gryphon Therapeutics, 600 Gateway Blvd., South San Francisco, California 94080, USA.
J Am Chem Soc. 2004 Mar 3;126(8):2439-46. doi: 10.1021/ja038985i.
Vpu is an 81-residue integral membrane protein encoded in the HIV-1 genome that is of considerable interest because it plays important roles in the release of virus particles from infected cells and in the degradation of the cellular receptor. We report here the total chemical synthesis of full-length Vpu(1-81) as well as a site-specifically (15)N-labeled analogue, Vpu(2-81), using native chemical ligation methodologies and also report a structural and functional comparison of these constructs with recombinant protein obtained via bacterial expression. The structures of the synthetic and expressed polypeptides were similar in lipid micelles using solution NMR spectroscopy. Solid-state NMR spectra of the polypeptides in aligned hydrated lipid bilayers indicated that their overall topologies were also very comparable. Further, the channel activity of the synthetic protein was found to be analogous to that previously characterized for the recombinant protein. We have thus demonstrated that using solid phase peptide synthesis and chemical ligation it is feasible to obtain large quantities of a purified and homogeneous membrane protein in a structurally and functionally relevant form for future structural and characterization studies.
Vpu是一种由HIV-1基因组编码的含81个氨基酸残基的整合膜蛋白,因其在病毒颗粒从感染细胞中释放以及细胞受体降解过程中发挥重要作用而备受关注。我们在此报告了使用天然化学连接方法对全长Vpu(1-81)以及位点特异性(15)N标记类似物Vpu(2-81)进行的全化学合成,并报告了这些构建体与通过细菌表达获得的重组蛋白的结构和功能比较。使用溶液核磁共振光谱法,合成多肽和表达多肽在脂质胶束中的结构相似。多肽在排列的水合脂质双层中的固态核磁共振光谱表明,它们的整体拓扑结构也非常相似。此外发现合成蛋白的通道活性与先前对重组蛋白所表征的活性类似。因此,我们证明了使用固相肽合成和化学连接方法,以结构和功能相关的形式获得大量纯化且均一的膜蛋白用于未来的结构和表征研究是可行的。