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首页> 外文期刊>BioMed research international >Computational Biophysical, Biochemical, and Evolutionary Signature of Human R-Spondin Family Proteins, the Member of Canonical Wnt/beta-Catenin Signaling Pathway
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Computational Biophysical, Biochemical, and Evolutionary Signature of Human R-Spondin Family Proteins, the Member of Canonical Wnt/beta-Catenin Signaling Pathway

机译:人R-XPondin家族蛋白,典型WNT /β-连环蛋白信号通路成员的计算生物物理学,生化和进化签名

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In human, Wnt/beta-catenin signaling pathway plays a significant role in cell growth, cell development, and disease pathogenesis. Four human (Rspo)s are known to activate canonical Wnt/beta-catenin signaling pathway. Presently, (Rspo)s serve as therapeutic target for several human diseases. Henceforth, basic understanding about the molecular properties of (Rspo)s is essential. We approached this issue by interpreting the biochemical and biophysical properties along with molecular evolution of (Rspo)s thorough computational algorithm methods. Our analysis shows that signal peptide length is roughly similar in (Rspo)s family along with similarity in aa distribution pattern. In Rspo3, four N-glycosylation sites were noted. All members are hydrophilic in nature and showed alike GRAVY values, approximately. Conversely, Rspo3 contains the maximum positively charged residues while Rspo4 includes the lowest. Four highly aligned blocks were recorded through Gblocks. Phylogenetic analysis shows Rspo4 is being rooted with Rspo2 and similarly Rspo3 and Rspol have the common point of origin. Through phylogenomics study, we developed a phylogenetic tree of sixty proteins (n = 60) with the orthologs and paralogs seed sequences. Protein-protein network was also illustrated. Results demonstrated in our study may help the future researchers to unfold significant physiological and therapeutic properties of (Rspo)s in various disease models.
机译:在人类中,WNT /β-连环素信号传导途径在细胞生长,细胞发育和疾病发病机制中起着重要作用。已知四个人(RSPO)S激活规范WNT /β-连环蛋白信号通路。目前,(RSPO)S作为几种人类疾病的治疗靶标。从此,基本上了解(RSPO)S是必不可少的。通过解释生物化学和生物物理性质以及(RSPO)的彻底计算算法方法的分子演变,我们接近了这个问题。我们的分析表明,信号肽长度在(RSPO)的家族中大致相似,以及AA分布图案的相似性。在RSPO 3中,注意到四个N-糖基化位点。所有成员都是亲水性的,并且大约显示出相似的肉汁值。相反,RSPO3包含最大充电的残留物,而RSPO4包括最低。通过GBLOCKS记录四个高度对齐的块。系统发育分析表明RSPO4源于RSPO 2,类似地RSPO3和RSPOL具有共同的原点。通过系统源研究,我们开发了六十蛋白的系统发育树(n = 60),用突出表道和副葡萄球菌种子序列。还说明了蛋白质 - 蛋白质网络。我们研究中所示的结果可以帮助未来的研究人员在各种疾病模型中展开(RSPO)S的显着生理和治疗特性。

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