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Identifying a novel mutation of CYP17A1 gene from five Chinese 17α-hydroxylase/17, 20-lyase deficiency patients

Authors :
Han, Bing
Liu, Wei
Zuo, Chun-Lin
Zhu, Hui
Li, Lu
Xu, Chao
Wang, Xia-Juan
Liu, Bing-Li
Pan, Chun-Ming
Lu, Ying-Li
Wu, Wan-Ling
Chen, Ming-Dao
Song, Huai-Dong
Cheng, Kai-Xiang
Qiao, Jie
Source :
Gene. Mar2013, Vol. 516 Issue 2, p345-350. 6p.
Publication Year :
2013

Abstract

Mutations of CYP17A1 gene could cause complete or partial, combined or isolated 17α-hydroxylase/17,20-lyase enzyme deficiencies (17OHD). We intended to investigate the CYP17A1 mutation in five unrelated patients and analyze its possible influence on phenotype of an atypical 17OHD patient presented with micropenis, hypertension and intermittent hypokalemia. Steroid hormones were assayed in these patients. A novel missense mutation (c.1169C>G, p. Thr390Arg) located in exon 7 was detected in one of the patients. Homozygous c. 985_987delinsAA, p. Tyr329fs mutation was found in two patients, while compound heterozygous mutations (c. 985_987delinsAA, p. Tyr329fs/c. 932–939 del, p. Val311fs and c. 287G>A, p. Arg96Gln/c. 985_987delinsAA, p. Tyr329fs) were found in two other patients, respectively. Then, steric model analysis of CYP17A1 showed that the novel mutation T390R changed the local structure as well as the electrostatic potential of the nearby beta sheet. Finally, site-directed mutagenesis and in vitro expression were used to analyze the activity of novel mutant CYP17A1. It indicated the T390R mutant retained part of enzyme activity, which was consistent to the clinical features. In conclusion, we identified a novel missense mutation of CYP17A1 gene from a patient with micropenis, hypertension and intermittent hypokalemia, which varied from other four patients. It also expanded our understanding of genotype–phenotype correlation of the disease. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
03781119
Volume :
516
Issue :
2
Database :
Academic Search Index
Journal :
Gene
Publication Type :
Academic Journal
Accession number :
85252095
Full Text :
https://doi.org/10.1016/j.gene.2012.12.010