Zhang L, Mason J I, Naiki Y, Copeland K C, Castro-Magana M, Gordon-Walker T T, Chang Y T, Pang S
Department of Pediatrics, University of Illinois College of Medicine, Chicago 60612, USA.
J Clin Endocrinol Metab. 2000 Apr;85(4):1678-85. doi: 10.1210/jcem.85.4.6539.
We identified two homozygous missense mutations in the human type II 3beta-hydroxysteroid dehydrogenase (3/betaHSD) gene, the first in codon 6 of exon II [CTT (Leu) to TTT (Phe)] in a male infant with hyperpigmented scrotum and hypospadias, raised as a male and no apparent salt-wasting since neonatal age, and the second in codon 259 of exon IV [ACG (Thr) to ATG (Met)] in a male pseudohermaphrodite with labial scrotal folds, microphallus, chordee, and fourth degree hypospadias, raised as a female and with salt-wasting disorder since neonatal age. In vitro transient expression of mutant type II 3betaHSD complementary DNAs of L6F, T259M, as well as T259R for comparison was examined by a site-directed mutagenesis and transfection of construct into COS-1 and COS-7 cells. Northern blot analysis revealed expression of similar amounts of type II 3betaHSD messenger ribonucleic acid from the COS-1 cells transfected by L6F, T259M, T259R, and wild-type (WT) complementary DNAs. Western immunoblot analysis revealed a similar amount of L6F mutant protein compared to WT enzyme from COS-1 cells, but neither L6F from COS-7 cells nor T259M or T259R mutant protein in COS-1 or COS-7 cells was detectable. Enzyme activity in intact COS-1 cells using 1 micromol/L pregnenolone as substrate in the medium after 6 h revealed relative conversion rates of pregnenolone to progesterone of 46% by WT enzyme, 22% by L6F enzyme, and 8% by T259M enzyme and less than 4% activity by T259R enzyme. Using 1 micromol/L dehydroepiandrosterone as substrate, the relative conversion rate of dehydroepiandrosterone to androstenedione after 6 was 89% by WT enzyme, 35% by L6F enzyme, 5.1% by T259M enzyme and no activity by T259R enzyme. However, the L6F mutant 3betaHSD activity, despite its demonstration in the intact cells, was not detected in homogenates of COS-1 cells or in immunoblots of COS-7 cells, suggestive of the relatively unstable nature of this protein in vitro, possibly attributable to the decreased 3betaHSD activity. In the case of T259M and T259R mutations, consistently undetectable proteins in both COS cells despite detectable messenger ribonucleic acids indicate severely labile proteins resulting in either no or very little enzyme activity, and these data further substantiate the deleterious effect of a structural change in this predicted putative steroid-binding domain of the gene. In conclusion, the findings of the in vitro study of mutant type II 3betaHSD enzyme activities correlated with a less severe clinical phenotype of nonsalt-wasting and a lesser degree of genital ambiguity in the patient with homozygous L6F mutation compared to a more severe clinical phenotype of salt-wasting and severe degree of genital ambiguity in the patient with homozygous T259M mutation in the gene.
我们在人类II型3β-羟基类固醇脱氢酶(3βHSD)基因中鉴定出两个纯合错义突变,第一个突变发生在外显子II的第6密码子[CTT(Leu)突变为TTT(Phe)],该突变出现在一名患有阴囊色素沉着和尿道下裂的男婴中,该男婴按男性抚养,自新生儿期以来无明显失盐现象;第二个突变发生在外显子IV的第259密码子[ACG(Thr)突变为ATG(Met)],该突变出现在一名男性假两性畸形患者中,该患者有阴唇阴囊褶、小阴茎、阴茎下弯和IV度尿道下裂,按女性抚养,自新生儿期以来患有失盐症。通过定点诱变并将构建体转染到COS-1和COS-7细胞中,对L6F、T259M以及用于比较的T259R的突变型II型3βHSD互补DNA进行体外瞬时表达检测。Northern印迹分析显示,用L6F、T259M、T259R和野生型(WT)互补DNA转染的COS-1细胞中,II型3βHSD信使核糖核酸的表达量相似。Western免疫印迹分析显示,与COS-1细胞中的WT酶相比,L6F突变蛋白的量相似,但在COS-7细胞中未检测到L6F,在COS-1或COS-7细胞中也未检测到T259M或T259R突变蛋白。在完整的COS-1细胞中,以1μmol/L孕烯醇酮作为培养基中的底物,6小时后显示,WT酶将孕烯醇酮转化为孕酮的相对转化率为46%,L6F酶为22%,T259M酶为8%,T259R酶的活性低于4%。以1μmol/L脱氢表雄酮作为底物,6小时后脱氢表雄酮转化为雄烯二酮的相对转化率,WT酶为89%,L6F酶为35%,T259M酶为5.1%,T259R酶无活性。然而,尽管L6F突变型3βHSD活性在完整细胞中得到证实,但在COS-1细胞匀浆或COS-7细胞的免疫印迹中未检测到,这表明该蛋白在体外相对不稳定,可能归因于3βHSD活性降低。对于T259M和T2