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胎盘碱性磷酸酶(PLAP/ALPP)D同工酶的结构、基因组DNA分型及动力学特征

Structure, genomic DNA typing, and kinetic characterization of the D allozyme of placental alkaline phosphatase (PLAP/ALPP).

作者信息

Wennberg Charlotte, Kozlenkov Alexey, Di Mauro Sonia, Fröhlander Nils, Beckman Lars, Hoylaerts Marc F, Millán José Luis

机构信息

Department of Medical Biosciences, Medical Genetics, Umeå University, Umeå, Sweden.

出版信息

Hum Mutat. 2002 Mar;19(3):258-67. doi: 10.1002/humu.10052.

Abstract

The D allozyme of placental alkaline phosphatase (PLAP) displays enzymatic properties at variance with those of the common PLAP allozymes. We have deduced the amino acid sequence of the PLAP D allele by PCR cloning of its gene, ALPP. Two coding substitutions were found in comparison with the cDNA of the common PLAP F allele, i.e., 692C>G and 1352A>G, which translate into a P209R and E429G substitution. A single nucleotide primer extension (SNuPE) assay was developed using PCR primers that enable the amplification of a 1.9 kb PLAP fragment. Extension primers were then used on this PCR fragment to detect the 692C>G and 1352A>G substitution. The SNuPE assay on these two nucleotide substitutions enabled us to distinguish the PLAP F and D alleles from the PLAP S/I alleles. Functional studies on the D allozyme were made possible by constructing and expressing a PLAP D cDNA, i.e., [Arg209, Gly429]PLAP, into wild-type Chinese hamster ovary cells. We determined the k(cat) and K(m), of the PLAP S, F, and D allozymes using the non-physiological substrate p-nitrophenylphosphate at an optimal pH (9.8) as well as two physiological substrates, i.e., pyridoxal-5-phosphate and inorganic pyrophosphate at physiological pH (7.5). We found that the biochemical properties of the D allozyme of PLAP are significantly different from those of the common PLAP allozymes. These biochemical findings suggest that a suboptimal enzymatic function by the PLAP D allozyme may be the basis for the apparent negative selective pressure of the PLAP D allele. The development of the SNuPE assay will enable us to test the hypothesis that the PLAP D allele is subjected to intrauterine selection by examining genomic DNA from statistically informative population samples.

摘要

胎盘碱性磷酸酶(PLAP)的D同工酶表现出与常见PLAP同工酶不同的酶学特性。我们通过对其基因ALPP进行PCR克隆推导了PLAP D等位基因的氨基酸序列。与常见PLAP F等位基因的cDNA相比,发现了两个编码替换,即692C>G和1352A>G,它们分别翻译成P209R和E429G替换。使用能够扩增1.9 kb PLAP片段的PCR引物开发了单核苷酸引物延伸(SNuPE)分析方法。然后在该PCR片段上使用延伸引物来检测692C>G和1352A>G替换。对这两个核苷酸替换的SNuPE分析使我们能够将PLAP F和D等位基因与PLAP S/I等位基因区分开来。通过构建并将PLAP D cDNA,即[Arg209, Gly429]PLAP,表达至野生型中国仓鼠卵巢细胞中,对D同工酶进行了功能研究。我们在最佳pH(9.8)下使用非生理性底物对硝基苯磷酸酯以及在生理pH(7.5)下使用两种生理性底物,即磷酸吡哆醛和无机焦磷酸,测定了PLAP S、F和D同工酶的k(cat)和K(m)。我们发现PLAP的D同工酶的生化特性与常见PLAP同工酶的生化特性显著不同。这些生化发现表明,PLAP D同工酶的次优酶功能可能是PLAP D等位基因明显负选择压力的基础。SNuPE分析方法的开发将使我们能够通过检查来自具有统计学意义的群体样本的基因组DNA来检验PLAP D等位基因受到宫内选择的假设。

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