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Characterization of a Pathogenic Variant in the ABCD1 Gene Through Protein Molecular Modeling

机译:通过蛋白质分子建模表征ABCD1基因的病原变体

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Background. The ATP-binding cassette, subfamily D, member 1 (ABCD1) protein is a peroxisomal half-transporter that allows for very long chain fatty acid (VLCFA) degradation. Pathogenic variants of ABCD1 cause VLCFAs to build up in various tissues and bodily fluids, resulting in a disorder called X-linked adrenoleukodystrophy (X-ALD). This disorder is most commonly marked by adrenocortical insufficiency and high VLCFA concentration, and has varying levels of neurological involvement depending on phenotype. For example, the Addison-only form of X-ALD has no neurological impact, while the cerebral form of X-ALD often causes severe sensory loss, motor function impairment, cognitive decline, and death. Methods. A newly characterized and suspected pathogenic variant in ABCD1 was analyzed using our protein informatics platform (PIP). Personalized protein-level molecular studies were completed on genetic testing data, complementing the analysis and clinical study. Results. A case of adult onset adrenomyeloneuropathy (AMN) and a novel ABCD1 variant are presented. The unique ABCD1 protein is discussed, and the proband’s case is compared to existing reports of AMN. Conclusions. Data fusion from multiple sources was combined in a comprehensive approach yielding an enriched assessment of the patient’s disease and prognosis. Molecular modeling was performed on the variant to better characterize its clinical significance and confirm pathogenicity.
机译:背景。 ATP结合盒,亚家族D,构件1(ABCD1)蛋白是过氧异相体半转运蛋白,其允许非常长的链脂肪酸(VLCFA)降解。 ABCD1的致病变体导致VLCFA在各种组织和体液中构建,导致称为X连接腺胁迫的病症(X-ALD)。这种疾病最常由肾上腺皮质不足和高VLCFA浓度标记,并且根据表型,具有不同程度的神经培养。例如,X-Ald的亚艾迪生形式没有神经撞击,而X-Ald的脑形式通常会导致严重的感官损失,运动功能障碍,认知下降和死亡。方法。使用我们的蛋白质信息学平台(PIP)分析了ABCD1中的新特征和疑似致病变体。在遗传检测数据上完成个性化蛋白水平分子研究,补充分析和临床研究。结果。提出了成人发病肾上腺素病变(AMN)和新型ABCD1变体的情况。讨论了独特的ABCD1蛋白,并将证据的案例与AMN的现有报告进行了比较。结论。来自多种来源的数据融合以综合方法组合,产生了对患者疾病和预后的浓缩评估。对变体进行分子建模以更好地表征其临床意义并确认致病性。

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