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首页> 外文期刊>Journal of cellular biochemistry. >Prioritization of SNPs in y+LAT‐1 culpable of Lysinuric protein intolerance and their mutational impacts using protein‐protein docking and molecular dynamics simulation studies
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Prioritization of SNPs in y+LAT‐1 culpable of Lysinuric protein intolerance and their mutational impacts using protein‐protein docking and molecular dynamics simulation studies

机译:Y + LAT-1中SNP的优先级排序溶血性蛋白质不耐受和使用蛋白质 - 蛋白对接和分子动力学模拟研究的突变影响

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Abstract Lysinuric protein intolerance (LPI) is a rare, yet inimical, genetic disorder characterized by the paucity of essential dibasic amino acids in the cells. Amino acid transporter y+LAT‐1 interacts with 4F2 cell‐surface antigen heavy chain to transport the required dibasic amino acids. Mutation in y+LAT‐1 is rumored to cause LPI. However, the underlying pathological mechanism is unknown, and, in this analysis, we investigate the impact of point mutation in y+LAT‐1's interaction with 4F2 cell‐surface antigen heavy chain in causing LPI. Using an efficient and extensive computational pipeline, we have isolated M50K and L334R single‐nucleotide polymorphisms to be the most deleterious mutations in y+LAT‐1s. Docking of mutant y+LAT‐1 with 4F2 cell‐surface antigen heavy chain showed decreased interaction compared with native y+LAT‐1. Further, molecular dynamic simulation analysis reveals that the protein molecules increase in size, become more flexible, and alter their secondary structure upon mutation. We believe that these conformational changes because of mutation could be the reason for decreased interaction with 4F2 cell‐surface antigen heavy chain causing LPI. Our analysis gives pathological insights about LPI and helps researchers to better understand the disease mechanism and develop an effective treatment strategy.
机译:疏松苷蛋白质不耐受(LPI)是一种罕见,且不间的遗传疾病,其特征在于细胞中必需的二元氨基酸的缺乏。氨基酸转运蛋白Y + LAT-1与4F2细胞表面抗原重链相互作用以运输所需的二元氨基酸。据传,Y + LAT-1的突变引起LPI。然而,潜在的病理机制未知,并且在该分析中,我们研究了点突变在y + Lat-1与4F2细胞表面抗原重链中引起LPI的影响的影响。使用高效且广泛的计算管道,我们已经孤立的M50K和L334R单核苷酸多态性是Y + LAT-1S中最有害的突变。与天然Y + LAT-1相比,用4F2细胞表面抗原重链的突变体Y + LAT-1的对接显示相互作用降低。此外,分子动态模拟分析表明,蛋白质分子的尺寸增加,变得更加柔韧,并在突变时改变其二级结构。我们认为,由于突变而言,这些构象变化可能是降低与4F2细胞表面抗原重链的相互作用导致LPI的相互作用的原因。我们的分析为LPI提供了病理学见解,并帮助研究人员更好地了解疾病机制并制定有效的治疗策略。

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