Phenotype-genotype analysis in two Chinese families with Liddle syndrome

被引:19
|
作者
Gong, Ling [1 ,2 ,3 ]
Chen, Jinxing [1 ,2 ]
Shao, Liying [1 ,2 ]
Song, Weihua [2 ,3 ]
Hui, Rutai [1 ,2 ,3 ]
Wang, Yibo [1 ,2 ]
机构
[1] Chinese Acad Med Sci, State Key Lab Cardiovasc Dis, Sino German Lab Mol Med, Fuwai Hosp,Natl Ctr Cardiovasc Dis, Beijing 100037, Peoples R China
[2] Peking Union Med Coll, Beijing 100037, Peoples R China
[3] Chinese Acad Med Sci, Dept Cardiol, Fuwai Hosp, Natl Ctr Cardiovasc Dis, Beijing 100037, Peoples R China
基金
中国国家自然科学基金;
关键词
Liddle syndrome; Genotype; Phenotype; EPITHELIAL SODIUM-CHANNEL; NEWLY DISCOVERED FAMILY; BETA-SUBUNIT; MISSENSE MUTATION; GAMMA-SUBUNIT; FRAMESHIFT MUTATION; GENETIC-ANALYSIS; PY MOTIF; HYPERTENSION; IDENTIFICATION;
D O I
10.1007/s11033-013-3003-7
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
The families with Liddle syndrome show marked phenotypic variation in blood pressure, serum potassium and other clinical manifestations. Here we analyzed the correlation of genotype-phenotype in two Chinese families with Liddle syndrome. The sequence of C-terminus of SCNN1B and SCNN1G were screened in the two families with likely Liddle syndrome. In addition to hypertension and hypokalemia, one of the two pedigrees had sudden death in their family members, so the exons of 428 reported genes-related to cardiovascular diseases were screened as well in the family. A heterozygous beta R566X nonsense mutation was found in the proband-1 in the first pedigree, and the proband's sister and father. They showed mild phenotype with hypertension under control. In contrast, two of the four previous studies report that the mutation causes severe phenotype. A heterozygous beta R597PfrX607 frameshift mutation was identified in the proband-2 in the second pedigree, showing malignant phenotype including resistant hypertension, hypokalemia, higher PRA and plasma angiotensin II levels. Both the proband-2 and the proband-2's father had sudden death in their twenties, but no meaningful mutations were found by screening of the exons in 428 cardiovascular disease-related genes. However, the same mutation has been related to moderate phenotype in previous studies. Our results confirmed that the phenotypes of Liddle syndrome are varied significantly even with the same mutation. The mechanisms why the same mutation causes very different phenotype need to be explored because intervention of these modifiers may change the disease course and prognosis accordingly.
引用
收藏
页码:1569 / 1575
页数:7
相关论文
共 50 条
  • [1] Phenotype–genotype analysis in two Chinese families with Liddle syndrome
    Ling Gong
    Jinxing Chen
    Liying Shao
    Weihua Song
    Rutai Hui
    Yibo Wang
    Molecular Biology Reports, 2014, 41 : 1569 - 1575
  • [2] Genetic diagnosis of Liddle's syndrome by mutation analysis of SCNN1B and SCNN1G in a Chinese family
    Wang Lin-ping
    Gao Ling-gen
    Zhou Xian-liang
    Wu Hai-ying
    Zhang Lin
    Wen Dan
    Li Yue-hua
    Liu Ya-xin
    Tian Tao
    Fan Xiao-han
    Jiang Xiong-jing
    Zhang Hui-min
    Hut Ru-tai
    CHINESE MEDICAL JOURNAL, 2012, 125 (08) : 1401 - 1404
  • [3] A Clinical Phenotype Mimicking Essential Hypertension in a Newly Discovered Family With Liddle's Syndrome
    Rossi, Ermanno
    Farnetti, Enrico
    Nicoli, Davide
    Sazzini, Marco
    Perazzoli, Franco
    Regolisti, Giuseppe
    Grasselli, Chiara
    Santi, Rosaria
    Negro, Aurelio
    Mazzeo, Vincenzo
    Mantero, Franco
    Luiselli, Donata
    Casali, Bruno
    AMERICAN JOURNAL OF HYPERTENSION, 2011, 24 (08) : 930 - 935
  • [4] Phenotype-genotype correlation in antenatal and neonatal variants of Bartter syndrome
    Brochard, Karine
    Boyer, Olivia
    Blanchard, Anne
    Loirat, Chantal
    Niaudet, Patrick
    Macher, Marie-Alice
    Deschenes, Georges
    Bensman, Albert
    Decramer, Stephane
    Cochat, Pierre
    Morin, Denis
    Broux, Francoise
    Caillez, Mathilde
    Guyot, Claude
    Novo, Robert
    Jeunemaitre, Xavier
    Vargas-Poussou, Rosa
    NEPHROLOGY DIALYSIS TRANSPLANTATION, 2009, 24 (05) : 1455 - 1464
  • [5] Three Reportedly Unrelated Families With Liddle Syndrome Inherited From a Common Ancestor
    Pagani, Luca
    Diekmann, Yoan
    Sazzini, Marco
    De Fanti, Sara
    Rondinelli, Maurizio
    Farnetti, Enrico
    Casali, Bruno
    Caretto, Amelia
    Novara, Francesca
    Zuffardi, Orsetta
    Garagnani, Paolo
    Mantero, Franco
    Thomas, Mark G.
    Luiselli, Donata
    Rossi, Ermanno
    HYPERTENSION, 2018, 71 (02) : 273 - 279
  • [6] Prevalence of Liddle Syndrome Among Young Hypertension Patients of Undetermined Cause in a Chinese Population
    Wang, Lin-Ping
    Yang, Kun-Qi
    Jiang, Xiong-Jing
    Wu, Hai-Ying
    Zhang, Hui-Min
    Zou, Yu-Bao
    Song, Lei
    Bian, Jin
    Hui, Ru-Tai
    Liu, Ya-Xin
    Zhou, Xian-Liang
    JOURNAL OF CLINICAL HYPERTENSION, 2015, 17 (11) : 902 - 907
  • [7] Genotype-phenotype analysis of a newly discovered family with Liddle's syndrome
    Jeunemaitre, X
    Bassilana, F
    Persu, A
    Dumont, C
    Champigny, G
    Lazdunski, M
    Corvol, P
    Barbry, P
    JOURNAL OF HYPERTENSION, 1997, 15 (10) : 1091 - 1100
  • [8] Phenotype-Genotype Correlation in Morquio A Syndrome:Protocolfor a Meta-Analysis
    Diaz-Ordonez, Lorena
    Duque-Cordoba, Paola Andrea
    Nieva-Posso, Daniel Andres
    Saldarriaga, Wilmar
    Gutierrez-Medina, Juan David
    Pachajoa, Harry
    JMIR RESEARCH PROTOCOLS, 2024, 13
  • [9] Detection of 15 novel mutations in 52 children from 40 families with the Marfan or Loeys-Dietz syndrome and phenotype-genotype correlations
    Pees, C.
    Michel-Behnke, I.
    Hagl, M.
    Laccone, F.
    CLINICAL GENETICS, 2014, 86 (06) : 552 - 557
  • [10] Genotype-Phenotype Analysis of RPGR Variations: Reporting of 62 Chinese Families and a Literature Review
    Yang, Junxing
    Zhou, Lin
    Ouyang, Jiamin
    Xiao, Xueshan
    Sun, Wenmin
    Li, Shiqiang
    Zhang, Qingjiong
    FRONTIERS IN GENETICS, 2021, 12