Chen Ting-Shou, Chung Fong-Yu, Tjong Siu-Cin, Goh King-Siang, Huang Wei-Ning, Chien Kun-Yi, Wu Po-Long, Lin Hua-Ching, Chen Chun-Jung, Wu Wen-Guey
Institute of Bioinformatics and Structural Biology, National Tsing Hua University, Hsinchu 300, Taiwan.
Biochemistry. 2005 May 24;44(20):7414-26. doi: 10.1021/bi050172e.
Natural homologues of cobra cardiotoxins (CTXs) were classified into two structural subclasses of group I and II based on the amino acid sequence and circular dichroism analysis, but the exact differences in their three-dimensional structures and biological significance remain elusive. We show by circular dichroism, NMR spectroscopic, and X-ray crystallographic analyses of a newly purified group I CTX A6 from eastern Taiwan cobra (Naja atra) venoms that its loop I conformation adopts a type VIa turn with a cis peptide bond located between two proline residues of PPxY. A similar "banana-twisted" conformation can be observed in other group I CTXs and also in cyclolinopeptide A and its analogues. By binding to the membrane environment, group I CTX undergoes a conformational change to adopt a more extended hydrophobic domain with beta-sheet twisting closer to the one adopted by group II CTX. This result resolves a discrepancy in the CTX structural difference reported previously between solution as well as crystal state and shows that, in addition to the hydrophobicity, the exact loop I conformation also plays an important role in CTX-membrane interaction. Potential protein targets of group I CTXs after cell internalization are also discussed on the basis of the determined loop I conformation.
基于氨基酸序列和圆二色性分析,眼镜蛇心脏毒素(CTXs)的天然同源物被分为I组和II组两个结构亚类,但其三维结构的确切差异和生物学意义仍不清楚。我们通过对新纯化的来自台湾东部眼镜蛇(Naja atra)毒液的I组CTX A6进行圆二色性、核磁共振光谱和X射线晶体学分析表明,其环I构象采用VIa型转角,在PPxY的两个脯氨酸残基之间存在一个顺式肽键。在其他I组CTXs以及环脂肽A及其类似物中也可以观察到类似的“香蕉扭曲”构象。通过与膜环境结合,I组CTX发生构象变化,形成一个更伸展的疏水区,其β-折叠扭曲更接近II组CTX所采用的构象。这一结果解决了先前报道的CTX在溶液状态和晶体状态之间结构差异的矛盾,并表明除了疏水性外,环I的确切构象在CTX与膜的相互作用中也起着重要作用。基于确定的环I构象还讨论了I组CTXs细胞内化后的潜在蛋白质靶点。