Lloyd-MacGilp Susan A, Torielli Lucia, Bechtel Stephanie, Tripodi Grazia, Gomez-Sanchez Celso E, Zagato Laura, Bernhardt Rita, Kenyon Christopher J
Molecular Medicine Centre, Western General Hospital, Edinburgh, EH4 2XU Scotland, UK.
Am J Physiol Endocrinol Metab. 2002 Mar;282(3):E608-17. doi: 10.1152/ajpendo.00043.2001.
Using in vitro and in vivo methods, we have demonstrated increased sensitivity of adrenocortical steroidogenesis to ACTH in Milan hypertensive (MHS) compared with normotensive (MNS) rats and have investigated whether this is caused by mutations of steroidogenic enzymes. Genes encoding aldosterone synthase (CYP11B2) and 11beta-hydroxylase (CYP11B1) in MHS and MNS have been cloned and sequenced. Nucleotide 752 (G) in exon 4 of MHS CYP11B2 differs from that of MNS (A); CYP11B1 sequences were identical. The nucleotide 752 mutation caused a Q251R substitution in the amino acid sequence of MHS CYP11B2. The phenotype of MHS CYP11B2 alleles, when expressed in COS-1 cells, differed from that of MNS alleles. The relative activities of the three reactions catalyzed by CYP11B2 (11beta-hydroxylation of deoxycorticosterone, 18-hydroxylation of corticosterone, and dehydrogenation of 18-hydroxycorticosterone) were estimated after incubation of transfected cells with [(14)C]deoxycorticosterone and analysis of radioactivity associated with deoxycorticosterone, corticosterone, 18 hydroxycorticosterone, and aldosterone. Both 11- and 18-hydroxylase activities were lower (19 and 12%, respectively; P < 0.01 and P < 0.05) in cells transfected with MHS compared with MNS alleles, whereas 18-oxidase activity was 42% higher (P < 0.01). To assess the significance of the CYP11B2 mutation in vivo, DNA from F2 hybrid MHS x MNS rats was genotyped. MHS alleles were associated with lower urine volumes in both sexes, lower ventricle weights in male rats, but no difference in systolic or diastolic blood pressures between the sexes. We conclude that a mutation in CYP11B2 may affect aldosterone secretion in MHS; however, under normal environmental circumstances, we were unable to demonstrate any influence of this mutation on blood pressure.
运用体外和体内实验方法,我们已证实与正常血压(MNS)大鼠相比,米兰高血压(MHS)大鼠的肾上腺皮质类固醇生成对促肾上腺皮质激素(ACTH)的敏感性增加,并且研究了这是否由类固醇生成酶的突变所致。已对MHS和MNS大鼠中编码醛固酮合酶(CYP11B2)和11β-羟化酶(CYP11B1)的基因进行了克隆和测序。MHS CYP11B2第4外显子中的核苷酸752(G)与MNS的不同(A);CYP11B1序列相同。核苷酸752突变导致MHS CYP11B2氨基酸序列中出现Q251R替换。当在COS-1细胞中表达时,MHS CYP11B2等位基因的表型与MNS等位基因不同。在用[(14)C]脱氧皮质酮孵育转染细胞并分析与脱氧皮质酮、皮质酮、18-羟皮质酮和醛固酮相关的放射性后,估计了由CYP11B2催化的三个反应(脱氧皮质酮的11β-羟化、皮质酮的18-羟化和18-羟皮质酮的脱氢)的相对活性。与转染MNS等位基因的细胞相比,转染MHS等位基因的细胞中11-羟化酶和18-羟化酶活性均较低(分别为19%和12%;P < 0.01和P < 0.05),而18-氧化酶活性高42%(P < 0.01)。为了评估CYP11B2突变在体内的意义,对F2杂交MHS×MNS大鼠的DNA进行了基因分型。MHS等位基因与两性较低的尿量、雄性大鼠较低的心室重量相关,但两性之间的收缩压或舒张压无差异。我们得出结论,CYP11B2中的突变可能影响MHS中的醛固酮分泌;然而,在正常环境情况下,我们无法证明该突变对血压有任何影响。