Banerjee Santasree, Wu Qian, Ying Yuyi, Li Yanni, Shirota Matsuyuki, Neculai Dante, Li Chen
Department of Cell Biology and Medical Genetics, School of Medicine, Zhejiang University, Hangzhou, China.
BGI-Shenzhen, Shenzhen, China.
Oncotarget. 2016 Aug 16;7(33):52766-52780. doi: 10.18632/oncotarget.10599.
The K1 and K10 associated genodermatoses are characterized by clinical symptoms of mild to severe redness, blistering and hypertrophy of the skin. In this paper, we set out to computationally investigate the structural and functional effects of missense mutations on the 2B domain of K1/K10 heterodimer and its consequences in disease phenotype. We modeled the structure of the K1/K10 heterodimer based on crystal structures for the human homolog K5/K14 heterodimer, and identified that the missense mutations exert their effects on stability and assembly competence of the heterodimer by altering physico-chemical properties, interatomic interactions, and inter-residue atomic contacts. Comparative structural analysis between all the missense mutations and SNPs showed that the location and physico-chemical properties of the substituted amino acid are significantly correlated with phenotypic variations. In particular, we find evidence that a particular SNP (K10, p.E443K) is a pathogenic nsSNP which disrupts formation of the hydrophobic core and destabilizes the heterodimer through the loss of interatomic interactions. Our study is the first comprehensive report analyzing the mutations located on 2B domain of K1/K10 heterodimeric coiled-coil complex.
与K1和K10相关的遗传性皮肤病的特征是皮肤出现从轻度到重度的发红、起泡和肥厚等临床症状。在本文中,我们着手通过计算研究错义突变对K1/K10异二聚体2B结构域的结构和功能影响及其在疾病表型中的后果。我们基于人类同源物K5/K14异二聚体的晶体结构对K1/K10异二聚体的结构进行了建模,并确定错义突变通过改变物理化学性质、原子间相互作用和残基间原子接触对异二聚体的稳定性和组装能力产生影响。所有错义突变与单核苷酸多态性之间的比较结构分析表明,取代氨基酸的位置和物理化学性质与表型变异显著相关。特别是,我们发现有证据表明一个特定的单核苷酸多态性(K10,p.E443K)是一个致病性非同义单核苷酸多态性,它通过原子间相互作用的丧失破坏了疏水核心的形成并使异二聚体不稳定。我们的研究是第一份全面分析位于K1/K10异二聚体卷曲螺旋复合物2B结构域上突变的报告。