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与 l-赖氨酸代谢紊乱相关的 G729R 2-氧代戊二酸脱氢酶遗传变异的结构-功能分析。

Structure-function analyses of the G729R 2-oxoadipate dehydrogenase genetic variant associated with a disorder of l-lysine metabolism.

机构信息

Department of Chemistry, Rutgers, The State University of New Jersey, Newark, New Jersey 07102.

Department of Chemistry, Rutgers, The State University of New Jersey, Newark, New Jersey 07102

出版信息

J Biol Chem. 2020 Jun 5;295(23):8078-8095. doi: 10.1074/jbc.RA120.012761. Epub 2020 Apr 17.

Abstract

2-Oxoadipate dehydrogenase (E1a, also known as DHTKD1, dehydrogenase E1, and transketolase domain-containing protein 1) is a thiamin diphosphate-dependent enzyme and part of the 2-oxoadipate dehydrogenase complex (OADHc) in l-lysine catabolism. Genetic findings have linked mutations in the gene to several metabolic disorders. These include α-aminoadipic and α-ketoadipic aciduria (AMOXAD), a rare disorder of l-lysine, l-hydroxylysine, and l-tryptophan catabolism, associated with clinical presentations such as developmental delay, mild-to-severe intellectual disability, ataxia, epilepsy, and behavioral disorders that cannot currently be managed by available treatments. A heterozygous missense mutation, c.2185G→A (p.G729R), in has been identified in most AMOXAD cases. Here, we report that the G729R E1a variant when assembled into OADHc displays a 50-fold decrease in catalytic efficiency for NADH production and a significantly reduced rate of glutaryl-CoA production by dihydrolipoamide succinyl-transferase (E2o). However, the G729R E1a substitution did not affect any of the three side-reactions associated solely with G729R E1a, prompting us to determine the structure-function effects of this mutation. A multipronged systematic analysis of the reaction rates in the OADHc pathway, supplemented with results from chemical cross-linking and hydrogen-deuterium exchange MS, revealed that the c.2185G→A mutation affects E1a-E2o assembly, leading to impaired channeling of OADHc intermediates. Cross-linking between the C-terminal region of both E1a and G729R E1a with the E2o lipoyl and core domains suggested that correct positioning of the C-terminal E1a region is essential for the intermediate channeling. These findings may inform the development of interventions to counter the effects of pathogenic mutations.

摘要

2-氧代戊二酸脱氢酶(E1a,也称为 DHTKD1、脱氢酶 E1 和包含转酮醇酶结构域的蛋白 1)是一种依赖硫胺素二磷酸的酶,是 l-赖氨酸分解代谢中的 2-氧代戊二酸脱氢酶复合物(OADHc)的一部分。遗传发现将 基因中的突变与几种代谢紊乱联系起来。这些包括 α-氨基己二酸和 α-酮戊二酸尿症(AMOXAD),这是一种罕见的 l-赖氨酸、l-羟赖氨酸和 l-色氨酸分解代谢紊乱,与发育迟缓、轻度至重度智力障碍、共济失调、癫痫和行为障碍等临床表现相关,目前无法通过现有治疗方法进行管理。在大多数 AMOXAD 病例中,已鉴定出 中的杂合错义突变 c.2185G→A(p.G729R)。在这里,我们报告说,组装到 OADHc 中的 G729R E1a 变体对 NADH 生成的催化效率降低了 50 倍,并且通过二氢乳酰基-CoA 琥珀酰转移酶(E2o)生成的戊二酰-CoA 产率明显降低。然而,G729R E1a 取代不影响仅与 G729R E1a 相关的三种侧反应中的任何一种,促使我们确定该突变的结构-功能影响。对 OADHc 途径中的反应速率进行了多方面的系统分析,并辅以化学交联和氢-氘交换 MS 的结果,表明 c.2185G→A 突变影响 E1a-E2o 组装,导致 OADHc 中间体的易位受损。E1a 和 G729R E1a 的 C 末端区域与 E2o 酰基辅酶和核心结构域之间的交联表明,正确定位 E1a 的 C 末端区域对于中间物易位至关重要。这些发现可能为开发对抗致病性 突变影响的干预措施提供信息。

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