首页> 美国卫生研究院文献>Journal of Clinical Biochemistry and Nutrition >Co-synthesis of Human δ-Aminolevulinate Dehydratase (ALAD) Mutants with the Wild-type Enzyme in Cell-free System—Critical Importance of Conformation on Enzyme Activity—
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Co-synthesis of Human δ-Aminolevulinate Dehydratase (ALAD) Mutants with the Wild-type Enzyme in Cell-free System—Critical Importance of Conformation on Enzyme Activity—

机译:无细胞系统中人类δ-氨基乙酰丙酸脱水酶(ALAD)突变体与野生型酶的共合成-酶活性构象的关键意义-

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摘要

Properties of mutant δ-aminolevulinate dehydratase (ALAD) found in patients with ALAD porphyria were studied by enzymological and immunological analyses after the synthesis of enzyme complexes using a cell-free system. Enzyme activities of homozygous G133R, K59N/G133R, V153M, and E89K mutants were 11%, 22%, 67%, and 75% of the wild-type ALAD, respectively, whereas that of K59N, a normal variant, was 112%. Enzyme activities of L273R, C132R and F12L were undetectable. Co-synthesis of F12L, L273R, G133R, K59N/G133R, or C132R mutants with the wild-type at various ratios showed that ALAD activity was proportionally decreased in the amount of the wild-type in the complex. In contrast, co-synthesis of V153M, K59N, and E89K with the wild-type did not influence enzyme activity of the wild-type. Surface charge changes in K59N, E89K, C132R and G133R predicted by mutations were also confirmed by native polyacrylamide gel electrophoresis. A compound E89K and C132R complex showed ALAD activity similar to that was found in erythrocytes of the patient. These findings indicate that cell-free synthesis of ALAD proteins reflects enzymatic activities found in patients, and suggest that, in addition to the direct effect of mutations on the catalytic activity, conformational effects play an important role in determining enzyme activity.
机译:使用无细胞系统合成酶复合物后,通过酶学和免疫学分析研究了患有ALAD卟啉症的患者中发现的突变型δ-氨基乙酰丙酸盐脱水酶(ALAD)的特性。纯合G133R,K59N / G133R,V153M和E89K突变体的酶活性分别为野生型ALAD的11%,22%,67%和75%,而正常变体K59N的酶活性为112%。无法检测到L273R,C132R和F12L的酶活性。 F12L,L273R,G133R,K59N / G133R或C132R突变体与野生型的各种比率共合成表明,复合物中野生型的量中ALAD活性成比例地降低。相反,V153M,K59N和E89K与野生型的共合成并不影响野生型的酶活性。天然聚丙烯酰胺凝胶电泳也证实了突变预测的K59N,E89K,C132R和G133R的表面电荷变化。化合物E89K和C132R的复合物显示出与患者红细胞相似的ALAD活性。这些发现表明ALAD蛋白的无细胞合成反映了患者体内发现的酶活性,并表明,除了突变对催化活性的直接作用外,构象作用在确定酶活性中也起着重要作用。

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