Komrower Memorial Lecture 2023. Molecular basis of phenotype expression in homocystinuria: Where are we 30 years later?

IF 4.2 2区 医学 Q1 ENDOCRINOLOGY & METABOLISM
Viktor Kožich, Tomas Majtan
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Abstract

This review summarises progress in the research of homocystinuria (HCU) in the past three decades. HCU due to cystathionine β-synthase (CBS) was discovered in 1962, and Prof. Jan Peter Kraus summarised developments in the field in the first-ever Komrower lecture in 1993. In the past three decades, significant advancements have been achieved in the biology of CBS, including gene organisation, tissue expression, 3D structures, and regulatory mechanisms. Renewed interest in CBS arose in the late 1990s when this enzyme was implicated in biogenesis of H2S. Advancements in genetic and biochemical techniques enabled the identification of several hundreds of pathogenic CBS variants and the misfolding of missense mutations as a common mechanism. Several cellular, invertebrate and murine HCU models allowed us to gain insights into functional and metabolic pathophysiology of the disease. Establishing the E-HOD consortium and patient networks, HCU Network Australia and HCU Network America, offered new possibilities for acquiring clinical data in registries and data on patients' quality of life. A recent analysis of data from the E-HOD registry showed that the clinical variability of HCU is broad, extending from severe childhood disease to milder (late) adulthood forms, which typically respond to pyridoxine. Pyridoxine responsiveness appears to be the key factor determining the clinical course of HCU. Increased awareness about HCU played a role in developing novel therapies, such as gene therapy, correction of misfolding by chaperones, removal of methionine from the gut and enzyme therapies that decrease homocysteine or methionine in the circulation.

Abstract Image

科姆罗尔纪念讲座 2023。同型胱氨酸尿症表型表达的分子基础:30 年后我们在哪里?
本综述总结了过去三十年中高胱氨酸尿症(HCU)研究的进展。胱硫醚 β-合成酶(CBS)导致的 HCU 于 1962 年被发现,1993 年 Jan Peter Kraus 教授在首次 Komrower 讲座中总结了该领域的发展。在过去的三十年中,CBS 的生物学研究取得了重大进展,包括基因组织、组织表达、三维结构和调控机制。20 世纪 90 年代末,当这种酶与 H2S 的生物生成有关时,人们对 CBS 再次产生了兴趣。随着遗传和生化技术的进步,人们发现了数百种致病的 CBS 变异体,并发现错义突变的错误折叠是一种常见机制。多个细胞、无脊椎动物和小鼠 HCU 模型使我们得以深入了解该疾病的功能和代谢病理生理学。E-HOD联盟和患者网络(澳大利亚HCU网络和美国HCU网络)的建立,为在登记册中获取临床数据和患者生活质量数据提供了新的可能性。最近对 E-HOD 登记数据的分析表明,HCU 的临床变异性很大,从严重的儿童期疾病到较轻(晚期)的成年期疾病都有,这些疾病通常对吡哆醇有反应。吡哆醇的反应性似乎是决定 HCU 临床病程的关键因素。人们对 HCU 认识的提高在开发新型疗法方面发挥了作用,如基因疗法、通过伴侣蛋白纠正错误折叠、去除肠道中的蛋氨酸以及减少血液循环中同型半胱氨酸或蛋氨酸的酶疗法。
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来源期刊
Journal of Inherited Metabolic Disease
Journal of Inherited Metabolic Disease 医学-内分泌学与代谢
CiteScore
9.50
自引率
7.10%
发文量
117
审稿时长
4-8 weeks
期刊介绍: The Journal of Inherited Metabolic Disease (JIMD) is the official journal of the Society for the Study of Inborn Errors of Metabolism (SSIEM). By enhancing communication between workers in the field throughout the world, the JIMD aims to improve the management and understanding of inherited metabolic disorders. It publishes results of original research and new or important observations pertaining to any aspect of inherited metabolic disease in humans and higher animals. This includes clinical (medical, dental and veterinary), biochemical, genetic (including cytogenetic, molecular and population genetic), experimental (including cell biological), methodological, theoretical, epidemiological, ethical and counselling aspects. The JIMD also reviews important new developments or controversial issues relating to metabolic disorders and publishes reviews and short reports arising from the Society''s annual symposia. A distinction is made between peer-reviewed scientific material that is selected because of its significance for other professionals in the field and non-peer- reviewed material that aims to be important, controversial, interesting or entertaining (“Extras”).
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