Functional genomics of primary congenital glaucoma by pathway analysis and functional characterization of CYP1B1 mutations.

IF 1.5 4区 心理学 Q4 NEUROSCIENCES
Muneeb A Faiq, Himanshu N Singh, Mashooq Ali, Rima Dada, Kevin C Chan, Tanuj Dada, Daman Saluja
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引用次数: 0

Abstract

CYP1B1 is the most common gene implicated in primary congenital glaucoma (PCG) - the most common form of childhood glaucoma. How CYP1B1 mutations cause PCG is not known. Understanding the mechanism of PCG caused by CYP1B1 mutations is crucial for disease management, therapeutics development, and potential prevention. We performed a comprehensive metabolome/reactome analysis of CYP1B1 to enlist CYP1B1-mediated processes in eye development. The identified metabolic events were classified into major pathways. Functional analysis of these metabolic pathways was performed after cloning the CYP1B1 wild-type gene and expressing the wild-type and selected novel mutants (previously reported by our group L24R, F190L, H279D, and G329D) in heterologous hosts. Stability and enzymatic functions were investigated. Structural modeling of the wild-type and the variants was also performed. Reactome analysis revealed a total of 166 metabolic processes which could be classified into four major pathways including estradiol metabolism, retinoic acid metabolism, arachidonic acid metabolism, and melatonin metabolism. Stability assay revealed rapid denaturing of mutant proteins compared to wild-type. Enzymatic assays showed functional deficit in mutant proteins in metabolizing estradiol, retinoids, arachidonate, and melatonin. Modeling revealed that the examined mutations induced structural changes likely causative in functional loss in CYB1B1 as observed in enzymatic assays. Hence, mutations in the CYP1B1 gene are associated with a functional deficit in critical pathways of eye development. These findings implicate the potential contributions of altered metabolic regulations of estradiol, retinoids, arachidonate and melatonin to the pathogenesis of PCG during the processes of the formation of ocular structures and function.

原发性先天性青光眼的功能基因组学途径分析和CYP1B1突变的功能表征。
CYP1B1是与原发性先天性青光眼(PCG)相关的最常见基因,PCG是儿童青光眼最常见的形式。CYP1B1突变如何导致PCG尚不清楚。了解由CYP1B1突变引起的PCG机制对于疾病管理、治疗开发和潜在预防至关重要。我们对CYP1B1进行了全面的代谢组/反应组分析,以确定CYP1B1介导的眼睛发育过程。鉴定的代谢事件被分类为主要途径。克隆CYP1B1野生型基因,并在异源宿主中表达野生型和选择的新突变体(本组先前报道的L24R、F190L、H279D和G329D),对这些代谢途径进行功能分析。对其稳定性和酶功能进行了研究。还对野生型和变体进行了结构建模。Reactome分析共发现166个代谢过程,可分为雌二醇代谢、视黄酸代谢、花生四烯酸代谢和褪黑素代谢四大途径。稳定性分析显示突变蛋白与野生型相比变性快。酶分析显示突变蛋白代谢雌二醇、类维生素a、花生四烯酸和褪黑激素的功能缺陷。模型显示,在所检测的突变诱导的结构变化可能导致CYB1B1的功能丧失,正如酶分析中观察到的那样。因此,CYP1B1基因突变与眼睛发育关键通路的功能缺陷有关。这些发现暗示了雌二醇、类维甲酸、花生四烯酸和褪黑激素代谢调节的改变在眼部结构和功能形成过程中对PCG发病机制的潜在贡献。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Vision Research
Vision Research 医学-神经科学
CiteScore
3.70
自引率
16.70%
发文量
111
审稿时长
66 days
期刊介绍: Vision Research is a journal devoted to the functional aspects of human, vertebrate and invertebrate vision and publishes experimental and observational studies, reviews, and theoretical and computational analyses. Vision Research also publishes clinical studies relevant to normal visual function and basic research relevant to visual dysfunction or its clinical investigation. Functional aspects of vision is interpreted broadly, ranging from molecular and cellular function to perception and behavior. Detailed descriptions are encouraged but enough introductory background should be included for non-specialists. Theoretical and computational papers should give a sense of order to the facts or point to new verifiable observations. Papers dealing with questions in the history of vision science should stress the development of ideas in the field.
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