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The two domains of cotton WLIM1a protein are functionally divergent

机译:棉花WLIM1a蛋白的两个结构域功能不同

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Our previous study demonstrated that WLIM1a has dual roles in fiber elongation and secondary cell wall synthesis in upland cotton, and the protein acts either as an actin-binding protein or as a transcription factor. Because WLIM1a consists of two different LIM domains, it is possible that these elements contribute differentially to the dual functions of the protein. In this study, we dissected the two LIM domains and characterized their biochemical functions. By using red fluorescent protein (RFP) fusion, co-sedimentation, and DNA binding methods, we found that the two domains of WLIM1a, domain1 (D1) and domain2 (D2), possessed different biochemical properties. While D1 contributed primarily to the actin filament-bundling activity of WLIM1a, D2 contributed to the DNA-binding activity of the protein; both D1 and D2 relied on a linker sequence for their activities. In addition, we found that WLIM1a and its two LIM domains form dimers in vitro . These results may lead to a better understanding of the molecular mechanisms of dual functions of WLIM1a during cotton fiber development.
机译:我们以前的研究表明,WLIM1a在陆地棉的纤维伸长和次级细胞壁合成中具有双重作用,并且该蛋白既可以作为肌动蛋白结合蛋白,又可以作为转录因子。因为WLIM1a由两个不同的LIM域组成,所以这些元素可能对蛋白质的双重功能有不同的贡献。在这项研究中,我们解剖了两个LIM域,并表征了它们的生化功能。通过使用红色荧光蛋白(RFP)融合,共沉淀和DNA结合方法,我们发现WLIM1a的两个域domain1(D1)和domain2(D2)具有不同的生化特性。 D1主要促进WLIM1a的肌动蛋白丝束捆扎,而D2促进蛋白质的DNA结合活性。 D1和D2都依赖于连接子序列来进行活动。此外,我们发现WLIM1a及其两个LIM域在体外形成二聚体。这些结果可能导致对棉纤维发育过程中WLIM1a双重功能的分子机制有更好的了解。

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