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首页> 外文期刊>The Biochemical Journal >When a module is not a domain: the case of the REJ module and the redefinition of the architecture of polycystin-1
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When a module is not a domain: the case of the REJ module and the redefinition of the architecture of polycystin-1

机译:当模块不是域时:REJ模块的情况和对polycystin-1体系结构的重新定义

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摘要

The extracellular region of a group of cell-surface receptors known as the polycystic kidney disease I family, containing, among others, polycystin-1, has been controversially described as containing four FNIII (fibronectin type III) domains or one REJ (receptor of egg jelly protein) module in the same portion of polypeptide. Stimulated by recent atomic force microscopy work, we re-examined the similarity of these four domains with a FNIII sequence profile showing the evolutionary relationship. Two of the predicted domains could be expressed in bacteria and refolded to give a protein suitable for biophysical study, and one of these expressed solubly. CD spectroscopy showed that both domains contain a significant amount of beta-sheet, in good agreement with theoretical predictions. Confirmation of independent folding as a domain is obtained from highly co-operative thermal and urea unfolding curves. Excellent dispersion of peaks in the high-field region of one-dimensional NMR spectra confirms the presence of a hydrophobic core. Analytical ultracentrifugation and analytical gel filtration agree very well with the narrow linewidths in the NMR spectra that at least one of the domains is monomeric. On the basis of this combined theoretical and experimental analysis, we show that the extracellular portion of polycystin-1 does indeed contain beta-sheet domains, probably FNIII, and that, consequently, the REJ module is not a single domain.
机译:有争议地描述了一组细胞表面受体的胞外区域,称为多囊性肾病I家族,其中除其他外还含有polycystin-1,被认为含有四个FNIII(纤连蛋白III型)结构域或一个REJ(卵受体)。果冻蛋白)模块中多肽的同一部分。在最近的原子力显微镜工作的刺激下,我们用显示进化关系的FNIII序列图谱重新检查了这四个结构域的相似性。可以在细菌中表达两个预测的结构域,然后将其折叠以产生适合生物物理研究的蛋白质,其中一个可溶表达。 CD光谱显示,两个结构域均包含大量的β-折叠,与理论预测非常吻合。从高度协作的热和尿素解折叠曲线获得对独立折叠域的确认。一维NMR光谱的高场区域中峰的出色分散性证实了疏水核的存在。分析型超速离心和分析型凝胶过滤与NMR谱中的窄线宽非常吻合,即至少一个域是单体的。基于这种理论和实验相结合的分析,我们表明,polycystin-1的胞外部分确实包含β-sheet结构域,可能是FNIII,因此,REJ模块不是单个结构域。

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