Mutants of 11β-Hydroxysteroid Dehydrogenase (11-HSD2) With Partial Activity
Author(s) -
B. Scott Nunez,
Fraser M. Rogerson,
Tomoatsu Mune,
Yoshio Igarashi,
Yuichi Nakagawa,
George Phillipov,
Asha Moudgil,
Luther B. Travis,
Mario Palermo,
Cedric Shackleton,
Perrin C. White
Publication year - 1999
Publication title -
hypertension
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 2.986
H-Index - 265
eISSN - 1524-4563
pISSN - 0194-911X
DOI - 10.1161/01.hyp.34.4.638
Subject(s) - cortisone , endocrinology , mutant , medicine , enzyme , isozyme , 11β hydroxysteroid dehydrogenase type 1 , wild type , corticosterone , biology , enzyme assay , mutation , dehydrogenase , mineralocorticoid , aldosterone , chemistry , biochemistry , gene , hormone
—Mutations in the kidney isozyme of human 11-hydroxysteroid dehydrogenase (11-HSD2) cause apparent mineralocorticoid excess, an autosomal recessive form of familial hypertension. We studied 4 patients with AME, identifying 4 novel and 3 previously reported mutations in theHSD11B2 (HSD11K ) gene. Point mutations causing amino acid substitutions were introduced into a pCMV5/11HSD2 expression construct and expressed in mammalian CHOP cells. Mutations L179R and R208H abolished activity in whole cells. Mutants S180F, A237V, and A328V had 19%, 72%, and 25%, respectively, of the activity of the wild-type enzyme in whole cells when cortisol was used as the substrate and 80%, 140%, and 55%, respectively, of wild-type activity when corticosterone was used as the substrate. However, these mutant proteins were only 0.6% to 5.7% as active as the wild-type enzyme in cell lysates, suggesting that these mutations alter stability of the enzyme. In regression analyses of all AME patients with published genotypes, several biochemical and clinical parameters were highly correlated with mutant enzymatic activity, demonstrated in whole cells, when cortisol was used as the substrate. These included the ratio of urinary cortisone to cortisol metabolites (R 2 =0.648,P <0.0001), age at presentation (R 2 =0.614,P <0.0001), and birth weight (R 2 =0.576,P =0.0004). Approximately 5% conversion of cortisol to cortisone is predicted in subjects with mutations that completely inactivate HSD11B2, suggesting that a low level of enzymatic activity is mediated by another enzyme, possibly 11-HSD1.
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