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影响小鼠乳酸脱氢酶基因座Ldh-1的一种突变。II. 与溶血性贫血相关的LDH-A缺乏的机制。

A mutation affecting the lactate dehydrogenase locus Ldh-1 in the mouse. II. Mechanism of the LDH-A deficiency associated with hemolytic anemia.

作者信息

Pretsch W, Merkle S, Favor J, Werner T

机构信息

GSF-Forschungszentrum für Umwelt und Gesundheit, Institut für Säugetiergenetik, Neuherberg, Germany.

出版信息

Genetics. 1993 Sep;135(1):161-70. doi: 10.1093/genetics/135.1.161.

Abstract

A procarbazine hydrochloride-induced mutation at the Ldh-1 structural locus encoding the A subunit of lactate dehydrogenase (LDH) was used to study the molecular and metabolic basis of severe hemolytic anemia due to LDH-A deficiency in the mouse. The mutant allele designated Ldh-1a-m1Neu codes for an enzyme that as homotetramer differs from the wild-type enzyme by a marked instability, acidic shift of the pH profile, increased Km for pyruvate and altered inhibition by high concentrations of this substrate. Except for the latter, all these altered properties of the mutant protein contribute to the diminished LDH activity in heterozygous and homozygous mutant individuals. Impaired energy metabolism of erythrocytes indicated by a relatively low ATP concentration is suggested to result in cell death at the end of the reticulocyte stage leading to the expression of hemolytic anemia with extreme reticulocytosis and hyperbilirubinemia. Despite the severe anemia, affected homozygous mutants exhibit approximately normal body weight and do not show noticeable impairment of viability or fertility. To date no such condition is observed in man. This discrepancy is likely due to the fact that in human erythrocytes both LDH-A and LDH-B subunits are expressed such that homozygotes for a LDH-A or LDH-B deficiency would not result in a comparably extreme LDH activity deficiency.

摘要

利用盐酸丙卡巴肼诱导乳酸脱氢酶(LDH)A亚基编码基因Ldh - 1结构位点发生突变,以研究小鼠中因LDH - A缺乏导致严重溶血性贫血的分子和代谢基础。指定为Ldh - 1a - m1Neu的突变等位基因编码一种酶,该酶作为同四聚体与野生型酶不同,表现为明显的不稳定性、pH谱的酸性偏移、对丙酮酸的Km增加以及高浓度该底物对其抑制作用的改变。除了后者,突变蛋白的所有这些改变的特性都导致杂合子和纯合子突变个体中LDH活性降低。红细胞能量代谢受损表现为ATP浓度相对较低,这被认为会导致网织红细胞阶段末期细胞死亡,从而导致溶血性贫血伴极度网织红细胞增多症和高胆红素血症的表现。尽管存在严重贫血,但受影响的纯合子突变体体重大致正常,且未表现出明显的生存能力或生育能力受损。迄今为止,在人类中未观察到这种情况。这种差异可能是由于在人类红细胞中同时表达了LDH - A和LDH - B亚基,因此LDH - A或LDH - B缺乏的纯合子不会导致同等程度的LDH活性极度缺乏。

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