Nephrology and Dialysis, Bambino Gesù Children's Hospital, Rome, Italy.
Gene. 2012 May 25;500(1):22-7. doi: 10.1016/j.gene.2012.02.052. Epub 2012 Mar 24.
An infant with a clinical phenotype of early onset hypoaldosteronism has been screened for mutation analysis of the Cyp11b2 gene encoding aldosterone synthase enzyme. We have described a novel nonsense mutation in exon 3 (c.508C>T) that gave rise to a shorter protein (Q170X) and two known concurrent missense mutations (c.594A>C in exon 3 and c.1157T>C in exon 7) that led to substitution of glutamic acid for aspartic acid at amino acid position 198 (E198D) and of valine for alanine at amino acid position 386 (V386A). The father, who carried E198D plus V386A mutations, showed a fractional sodium excretion of 1.25% that was unmodified by dietary salt restriction, suggesting a mild haploinsufficiency. We examined by in silico analysis the effect of the mutations on the secondary and tertiary structures of aldosterone synthase to explain the inefficient enzymatic activity. The Q170X mutation produced a truncated protein, which was consequently associated with a loss of catalytic activity. As predicted by JPred web system and Dock 6.3 software, the concurrent expression of E198D and V386A mutations induced a significant secondary structure rearrangement and a shift of the heme group and the 18-hydroxycorticosterone substrate from their optimal placement.
一位具有早发性低醛固酮血症临床表型的婴儿接受了醛固酮合酶酶编码基因 Cyp11b2 的突变分析筛选。我们描述了一种新的无义突变,位于外显子 3(c.508C>T),导致产生更短的蛋白质(Q170X),以及两个已知的同时发生的错义突变(c.594A>C 在 exon 3 和 c.1157T>C 在 exon 7),导致第 198 位氨基酸的天冬氨酸被谷氨酸取代(E198D)和第 386 位氨基酸的丙氨酸被缬氨酸取代(V386A)。携带 E198D 和 V386A 突变的父亲,其钠排泄分数为 1.25%,不受饮食盐限制的影响,提示存在轻度单倍不足。我们通过计算机分析研究了突变对醛固酮合酶的二级和三级结构的影响,以解释其酶活性降低的原因。Q170X 突变导致产生截短的蛋白质,从而丧失了催化活性。正如 JPred 网络系统和 Dock 6.3 软件所预测的那样,同时表达 E198D 和 V386A 突变会引起显著的二级结构重排,以及血红素基团和 18-羟基皮质酮底物从其最佳位置发生移位。