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精氨琥珀酸裂解酶缺乏症:通过免疫印迹法检测结构基因突变异质性的证据

Argininosuccinate lyase deficiency: evidence for heterogeneous structural gene mutations by immunoblotting.

作者信息

Simard L, O'Brien W E, McInnes R R

出版信息

Am J Hum Genet. 1986 Jul;39(1):38-51.

Abstract

Argininosuccinate lyase (AS lyase) deficiency is an inborn error of the urea cycle with extensive clinical and genetic heterogeneity. We investigated the biochemical basis of the enzyme defect and the genetic heterogeneity in this disorder using sodium dodecyl sulfate-polyacrylamide gel electrophoresis (SDS-PAGE) and immunoblotting of fibroblast extracts. The AS lyase monomer in control fibroblasts was present in two bands of approximately 51 and approximately 49 Kd. Each of 28 mutant strains had some cross-reactive material (CRM) of the lower (approximately 49 Kd) MW, in quantities ranging from trace to substantial levels. The approximately 51 Kd band was found in only six mutants with near-normal amounts of AS lyase CRM or high residual enzyme activity. The residual AS lyase enzyme activity in a mutant did not necessarily reflect the amount of the 49-51 Kd monomer in that strain. In contrast, there was a strong general correlation between the quantity of 49-51 Kd CRM in a mutant and the frequency of complementation by that mutant. In addition to the CRM of normal molecular weight (MW) (49-51 Kd), the majority of mutants (but not controls) had significant CRM present in one to five bands of MW less than 49 Kd. The immunoprecipitation of at least one of these low MW bands was inhibited by purified human AS lyase. Mutants indistinguishable by clinical, enzymatic, or complementation analysis have been shown to be heterogeneous in their content of AS lyase CRM, greatly extending the number of distinct mutant alleles identified at this locus. These data demonstrate that multiple unique mutations in the structural gene coding for the monomer cause AS lyase deficiency and that the AS lyase monomers made by these mutants may be unstable. Integration of these findings with enzymatic and complementation data has indicated the functional domain of the AS lyase monomer likely to be altered in certain mutants.

摘要

精氨琥珀酸裂解酶(AS裂解酶)缺乏症是尿素循环的一种先天性代谢缺陷,具有广泛的临床和遗传异质性。我们使用十二烷基硫酸钠-聚丙烯酰胺凝胶电泳(SDS-PAGE)和对成纤维细胞提取物进行免疫印迹,研究了该疾病中酶缺陷的生化基础和遗传异质性。对照成纤维细胞中的AS裂解酶单体存在于两条带中,分子量约为51kD和约49kD。28个突变株中的每一个都有一些较低分子量(约49kD)的交叉反应物质(CRM),其数量范围从微量到大量。仅在六个具有接近正常量的AS裂解酶CRM或高残留酶活性的突变体中发现了约51kD的条带。突变体中残留的AS裂解酶活性不一定反映该菌株中49-51kD单体的量。相比之下,突变体中49-51kD CRM的量与该突变体的互补频率之间存在很强的总体相关性。除了正常分子量(MW)(49-51kD)的CRM外,大多数突变体(但不是对照)在一到五条MW小于49kD的条带中存在显著水平的CRM。纯化的人AS裂解酶可抑制这些低MW条带中至少一条的免疫沉淀。通过临床、酶学或互补分析无法区分的突变体已被证明在其AS裂解酶CRM含量上存在异质性,大大扩展了在该位点鉴定出的不同突变等位基因的数量。这些数据表明,编码单体的结构基因中的多个独特突变导致AS裂解酶缺乏,并且这些突变体产生的AS裂解酶单体可能不稳定。将这些发现与酶学和互补数据相结合,表明了AS裂解酶单体的功能域可能在某些突变体中发生改变。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fce1/1684030/c5f94186d592/ajhg00143-0045-a.jpg

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