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阐明 MLL1 nsSNP 的作用:结构和功能的改变及其对白血病发生的贡献。

Elucidating the role of MLL1 nsSNPs: Structural and functional alterations and their contribution to leukemia development.

机构信息

Department of Clinical Laboratory Sciences, College of Applied Medical Sciences, Taibah University, Al-Madinah Al-Monawarah, Saudi Arabia.

Faculty of Medical Laboratory Sciences, Omdurman Islamic University, Omdurman, Sudan.

出版信息

PLoS One. 2024 Oct 15;19(10):e0304986. doi: 10.1371/journal.pone.0304986. eCollection 2024.

Abstract

(1) BACKGROUND: The Mixed lineage leukemia 1 (MLL1) gene, located on chromosome 11q23, plays a pivotal role in histone lysine-specific methylation and is consistently associated with various types of leukemia. Non-synonymous Single Nucleotide Polymorphisms (nsSNPs) have been tied to numerous diseases, including cancers, and have become valuable cancer biomarkers. There's a notable gap in studies probing the influence of SNPs on MLL1 protein structure, function, and subsequent modifications.

(2) METHODS: We utilized an array of bioinformatics tools, including PredictSNP, InterPro, ConSurf, I-Mutant2.0, MUpro, Musitedeep, Project HOPE, RegulomeDB, Mutpred2, and both CScape and CScape Somatic, to meticulously analyze the consequences of nsSNPs in the MLL1 gene.

(3) RESULTS: Out of 2,097 nsSNPs analyzed, 62 were determined to be significantly pathogenic by the PredictSNP tool, with ten crucial MLL1 functional domains identified using InterPro. Additionally, 50 of these nsSNPs had high conservation scores, hinting at potential effects on protein structure and function, while 32 were found to undermine MLL1 protein stability. Notably, four nsSNPs were deemed oncogenic, with two identified as cancer drivers. The nsSNP, D2724G, between the MLL1 protein's FY-rich domains, could disrupt proteolytic cleavage, altering gene expression patterns and potentially promoting cancer.

(4) CONCLUSIONS: Our research provides a comprehensive assessment of nsSNPs' impact in the MLL1 protein structure and function and consequently on leukemia development, suggesting potential avenues for personalized treatment, early detection, improved prognosis, and a deeper understanding of hematological malignancy genesis.

摘要

(1) 背景:混合谱系白血病 1 基因(MLL1)位于 11q23 染色体上,在组蛋白赖氨酸特异性甲基化中发挥关键作用,与各种类型的白血病密切相关。非同义单核苷酸多态性(nsSNPs)与包括癌症在内的许多疾病有关,已成为有价值的癌症生物标志物。目前,研究 SNP 对 MLL1 蛋白结构、功能和后续修饰影响的研究还存在显著差距。

(2) 方法:我们利用了一系列生物信息学工具,包括 PredictSNP、InterPro、ConSurf、I-Mutant2.0、MUpro、Musitedeep、Project HOPE、RegulomeDB、Mutpred2,以及 CScape 和 CScape Somatic,对 MLL1 基因中的 nsSNPs 进行了详细分析。

(3) 结果:在分析的 2097 个 nsSNPs 中,PredictSNP 工具确定了 62 个具有显著致病性的 SNP,InterPro 鉴定了 10 个关键的 MLL1 功能域。此外,这些 nsSNPs 中有 50 个具有较高的保守评分,提示它们可能对蛋白质结构和功能产生影响,而 32 个则降低了 MLL1 蛋白的稳定性。值得注意的是,有 4 个 nsSNPs 被认为具有致癌性,其中 2 个被认为是癌症驱动基因。FY-rich 结构域之间的 nsSNP(D2724G)可能会破坏蛋白的切割,改变基因表达模式,从而促进癌症的发生。

(4) 结论:我们的研究全面评估了 nsSNPs 对 MLL1 蛋白结构和功能的影响,进而对白血病的发生发展产生的影响,为个性化治疗、早期检测、改善预后以及深入了解血液恶性肿瘤的发生提供了潜在途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/db90/11478856/04589cf57cfc/pone.0304986.g001.jpg

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