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磷酸甘油酸激酶缺乏症与巴塞罗那突变引起的慢性溶血性贫血相关的酶学和代谢特征。

Enzymatic and metabolic characterization of the phosphoglycerate kinase deficiency associated with chronic hemolytic anemia caused by the PGK-Barcelona mutation.

机构信息

Unitat de Bioquímica i Biologia Molecular, Departament de Ciències Fisiològiques I, Facultat de Medicina, Institut d'Investigacions Biomèdiques August Pi i Sunyer, Universitat de Barcelona, Spain.

出版信息

Blood Cells Mol Dis. 2011 Mar 15;46(3):206-11. doi: 10.1016/j.bcmd.2010.12.009. Epub 2011 Jan 26.

Abstract

Recently, we reported a new mutation of phosphoglycerate kinase (PGK), called PGK-Barcelona, which causes chronic hemolytic anemia associated with progressive neurological impairment. We found a 140T→A substitution that produces an Ile46Asn change located at the N-domain of the enzyme and we suggested that the decrease of the PGK activity is probably related to a loss of enzyme stability. In this paper, by analyzing whole hemolysates and cloned enzymes, we show that both enzymes possess similar kinetic properties (although some differences are observed in the Km values) and the same electrophoretic mobility. However, PGK-Barcelona has higher thermal instability. Therefore, we confirm that the decrease of the red blood cell (RBC) PGK activity caused by the PGK-Barcelona mutation is more closely related to a loss of enzyme stability than to a decrease of enzyme catalytic function. Furthermore, we have measured the levels of glycolytic metabolites and adenine nucleotides in the RBC from controls and from the patient. The increase of 2,3-bisphosphoglycerate and the decrease of ATP RBC levels are the only detected metabolic changes that could cause hemolytic anemia.

摘要

最近,我们报道了一种新的磷酸甘油激酶(PGK)突变,称为 PGK-Barcelona,它可导致伴有进行性神经损伤的慢性溶血性贫血。我们发现 140T→A 取代产生位于酶的 N 结构域的 Ile46Asn 变化,并且我们推测 PGK 活性的降低可能与酶稳定性的丧失有关。在本文中,通过分析全血溶物和克隆酶,我们表明两种酶都具有相似的动力学特性(尽管在 Km 值上观察到一些差异)和相同的电泳迁移率。然而,PGK-Barcelona 具有更高的热不稳定性。因此,我们证实由 PGK-Barcelona 突变引起的 RBC PGK 活性降低与酶稳定性丧失的相关性更密切,而不是与酶催化功能降低的相关性更密切。此外,我们已经测量了对照和患者 RBC 中的糖酵解代谢物和腺嘌呤核苷酸水平。2,3-双磷酸甘油酸的增加和 RBC 水平的 ATP 降低是唯一检测到的可导致溶血性贫血的代谢变化。

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