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苯丙氨酸羟化酶基因四个错义突变(G247S、E280G、P362T、A434D)的体外表达及结构分析

[In vitro expression and structural analysis of four missense mutations (G247S, E280G, P362T, A434D) of phenylalanine hydroxylase gene].

作者信息

Song Fang, Qu Yujin, Okano Yoshiyuki, Ye Zhiqiang, Zhang Yumin, Jin Yuwei, Wang Hong

机构信息

Department of Medical Genetics, Capital Institute of Pediatrics, Beijing, 100020 People's Republic of China.

出版信息

Zhonghua Yi Xue Yi Chuan Xue Za Zhi. 2008 Feb;25(1):1-5.

Abstract

OBJECTIVE

To understand the pathogenic effect and the correlation between the genotype and phenotype of the 4 novel missense mutations (G247S, E280G, P362T and A434D) of phenylalanine hydroxylase gene (PAH).

METHODS

(1) The enzyme activity of the 4 mutants was assessed by using transient protein expression in mammalian cells. (2) The PAH amino acid sequences among different animal species were alignmented. (3) The effects of the 4 missense mutations on the protein structure were analyzed. (4) The clinical phenotype of the patients with PKU were analyzed, according to their blood Phe levels prior to treatment and the Phe tolerance.

RESULTS

(1) The residual enzyme activity expressed in vitro of G247S, E280G, P362T and A434D were 3.1%, 0.4%, 8.2% and 21.7% of the wild-type PAH respectively; (2)Gly247, Glu280 and Pro362 were among the highly conserved amino acids, while Ala434 was only moderately conserved; (3) As revealed by 3D structural analysis, G247S and E280G, being located at the active center of the enzyme, interfered with the binding of PAH to BH4 and ferrousion respectively, while P362T and A434D affected the formation and stability of the dimer and the tetramer of PAH; (4) As shown by clinical phenotypic analysis, classical PKU were observed in patients carrying G247S and E280G, moderate PKU were observed in patients carrying A434D, whereas both classical and moderate PKU were observed in patients carrying P362T.

CONCLUSION

(1) The E280G, G247S, P362T and A434D are all disease-causing mutations, with those located at the center of the enzyme displaying the most marked pathogenic effect; (2)The results of the structural analysis of the 3D molecule are consistent with the activity assessment of the enzyme expressed in vitro; (3) The consistency is observed between the genotype, the enzymatic activity expressed in vitro and the clinical phenotype.

摘要

目的

了解苯丙氨酸羟化酶基因(PAH)4种新的错义突变(G247S、E280G、P362T和A434D)的致病作用以及基因型与表型之间的相关性。

方法

(1)通过在哺乳动物细胞中瞬时蛋白表达来评估4种突变体的酶活性。(2)对不同动物物种间的PAH氨基酸序列进行比对。(3)分析4种错义突变对蛋白质结构的影响。(4)根据苯丙酮尿症(PKU)患者治疗前的血苯丙氨酸(Phe)水平和Phe耐受性分析其临床表型。

结果

(1)G247S、E280G、P362T和A434D在体外表达的残余酶活性分别为野生型PAH的3.1%、0.4%、8.2%和21.7%;(2)Gly247、Glu280和Pro362属于高度保守氨基酸,而Ala434仅为中度保守;(3)三维结构分析显示,位于酶活性中心的G247S和E280G分别干扰PAH与四氢生物蝶呤(BH4)和亚铁离子的结合,而P362T和A434D影响PAH二聚体和四聚体的形成及稳定性;(4)临床表型分析表明,携带G247S和E280G的患者表现为典型PKU,携带A434D的患者表现为中度PKU,而携带P362T的患者既有典型PKU也有中度PKU。

结论

(1)E280G、G247S、P362T和A434D均为致病突变,位于酶中心的突变致病作用最为显著;(2)三维分子结构分析结果与体外表达酶的活性评估结果一致;(3)基因型、体外表达的酶活性与临床表型之间存在一致性。

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