首页> 外文期刊>Biochemistry and Biophysics Reports >Structural alterations by five disease-causing mutations in the low-pH conformation of human dihydrolipoamide dehydrogenase (hLADH) analyzed by molecular dynamics – Implications in functional loss and modulation of reactive oxygen species generation by pathogenic hLADH forms
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Structural alterations by five disease-causing mutations in the low-pH conformation of human dihydrolipoamide dehydrogenase (hLADH) analyzed by molecular dynamics – Implications in functional loss and modulation of reactive oxygen species generation by pathogenic hLADH forms

机译:通过分子动力学分析人类二氢脂酰胺脱氢酶(hLADH)的低pH构象中的五个致病突变引起的结构改变–致病性hLADH形式对功能性氧和活性氧产生的调节作用的暗示

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Human dihydrolipoamide dehydrogenase (hLADH) is a flavoenzyme component (E3) of the human alpha-ketoglutarate dehydrogenase complex (α-KGDHc) and few other dehydrogenase complexes. Pathogenic mutations of hLADH cause severe metabolic diseases (atypical forms of E3 deficiency) that often escalate to cardiological or neurological presentations and even premature death; the pathologies are generally accompanied by lactic acidosis. hLADH presents a distinct conformation under acidosis (pH 5.5–6.8) with lower physiological activity and the capacity of generating reactive oxygen species (ROS). It has been shown by our laboratory that selected pathogenic mutations, besides lowering the physiological activity of hLADH, significantly stimulate ROS generation by hLADH, especially at lower pH, which might play a role in the pathogenesis of E3-deficiency in respective cases. Previously, we generated by molecular dynamics (MD) simulation the low-pH hLADH structure and analyzed the structural changes induced in this structure by eight of the pathogenic mutations of hLADH. In the absence of high resolution mutant structures these pieces of information are crucial for the mechanistic investigation of the molecular pathogeneses of the hLADH protein. In the present work we analyzed by molecular dynamics simulation the structural changes induced in the low-pH conformation of hLADH by five pathogenic mutations of hLADH; the structures of these disease-causing mutants of hLADH have never been examined before. Highlights ? 5 disease-causing mutants of hLADH were subjected to MD to reveal structural changes. ? MD simulations were carried out both in vacuum and in water supplemented with ions. ? Functional regions significantly affected by mutation were identified. ? Implicated residues are to be targeted in mechanistic studies of hLADH dysfunction.
机译:人二氢脂酰胺脱氢酶(hLADH)是人α-酮戊二酸脱氢酶复合物(α-KGDHc)和其他几种脱氢酶复合物的黄酮酶成分(E3)。 hLADH的致病性突变会导致严重的代谢性疾病(E3缺乏症的非典型形式),通常会升级为心脏病或神经系统疾病,甚至过早死亡。病理通常伴有乳酸性酸中毒。 hLADH在酸中毒(pH 5.5-6.8)下呈现出独特的构象,具有较低的生理活性和产生活性氧(ROS)的能力。我们的实验室已经证明,选择的致病性突变除了降低hLADH的生理活性外,还可以显着刺激hLADH产生ROS,特别是在较低的pH值下,这可能在相应病例的E3缺乏症发病中起作用。以前,我们通过分子动力学(MD)模拟生成了低pH值hLADH结构,并分析了hLADH的8种致病突变在该结构中引起的结构变化。在缺乏高分辨率突变体结构的情况下,这些信息对于hLADH蛋白的分子致病性机理的研究至关重要。在本工作中,我们通过分子动力学模拟分析了hLADH的五个致病突变在hLADH的低pH构象中诱导的结构变化;这些hLADH致病突变体的结构以前从未被检查过。强调 ?对5个致病的hLADH突变体进行MD处理,以揭示其结构变化。 ? MD模拟是在真空和补充离子的水中进行的。 ?确定了受突变显着影响的功能区。 ?牵连的残基将成为hLADH功能障碍机制研究的目标。

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