与复发性ALL相关的nt52c基因致病性非单核苷酸多态性的全面计算机分析

Reyhane Chamani, Parnia Sadat Pourhesseini MahmoudAbadi, Yasamin Janati, Roxana Tajdini
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摘要

背景:大约10-20%患有急性淋巴细胞白血病(ALL)的儿童会经历复发,这是他们死亡的主要原因。嘌呤核苷酸类似物常用于维持ALL的治疗。胞质5′-核苷酸酶(NT5C2)催化嘌呤类似物的5′去磷酸化。NT5C2基因的功能获得突变导致对嘌呤类似物治疗产生耐药性,随后导致疾病复发。材料和方法:在这项描述性研究中,使用生物信息学工具评估NT5C2基因单核苷酸多态性(snp)对该蛋白功能和结构的影响。因此,我们从NCBI数据库中检索了352个错义变体,并通过SIFT、PROVEAN、PMut、PANTHER、PolyPhen2、SNPs & Go和PhD-SNP服务器进行了分析。然后使用HOPE、NetSurp-2.0和PyMOL进行结构评价。此外,通过I-Mutant2.0和ConSurf分别评估了稳定性和进化保存性。结果:预测影响蛋白功能和稳定性的nssnp多达31个。此外,发现本地残留物被进化地保存下来。结构评价表明,24个nssnp引起的疏水性、柔性化、大小、电荷或表面可及性的改变将导致非共价相互作用的改变,进而导致蛋白质构象的改变。结论:生物标志物的鉴定对预测ALL患儿复发具有重要意义。在本研究中,生物信息学工具用于鉴定NT5C2基因中的24个高风险有害非snp。这些突变可用于预测ALL患者的化疗耐药性和复发。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A comprehensive in silico analysis of pathogenic nsSNPs in the NT5C2 gene involved in relapsed ALL
Background: About 10-20% of children suffering from acute lymphoblastic leukemia (ALL), experience a relapse, which is a major cause of their death. Purine nucleotide analogs are frequently prescribed to maintain the treatment of ALL. Cytosolic 5´-nucleotidase (NT5C2) catalyzes the 5´ dephosphorylation of purine analogs. Gain-of-function mutations in the NT5C2 gene result in resistance to the treatment with purine analogs and subsequently in the relapse of the disease. Materials and Methods: In this descriptive study, bioinformatics tools were used to assess the effect of single nucleotide polymorphisms (SNPs) in the NT5C2 gene on the function and structure of the protein. So, 352 missense variants were retrieved from the NCBI database and analyzed by SIFT, PROVEAN, PMut, PANTHER, PolyPhen2, SNPs & Go, and PhD-SNP servers. Then, structural evaluations were performed using HOPE, NetSurp-2.0, and PyMOL. Moreover, stability and evolutionary preservation were assessed by I-Mutant2.0 and ConSurf, respectively. Results: As many as 31 nsSNPs were predicted to be affecting the protein function and stability. Also, the native residues were found to be evolutionarily preserved. The structural evaluation demonstrated that a change of hydrophobicity, flexibility, size, charge, or surface accessibility due to 24 nsSNPs would lead to the change of noncovalent interactions and then the conformation of the protein. Conclusion: Identification of biomarkers is significant in the prediction of relapses in ALL children. In this study, bioinformatics tools served to identify 24 high-risk deleterious nsSNPs in the NT5C2 gene. These mutations can be used to predict resistance to chemotherapy and relapse in ALL patients.
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