The molecular genetic approach to ”Bartter’s syndrome”

被引:0
|
作者
Lothar Károlyi
Manuela C. Koch
Karl-Heinz Grzeschik
Hannsjörg W. Seyberth
机构
[1] Medizinisches Zentrum für Humangenetik,
[2] Philipps-Universität,undefined
[3] Bahnhofstrasse 7a,undefined
[4] D-35037 Marburg,undefined
[5] and Medizinisches Zentrum für Kinderheilkunde,undefined
[6] Philipps-Universität,undefined
[7] Deutschhausstrasse 12,undefined
[8] D-35033 Marburg,undefined
[9] Germany,undefined
[10] Medizinisches Zentrum für Humangenetik,undefined
[11] Philipps-Universität,undefined
[12] Bahnhofstrasse 7a,undefined
[13] D-35037 Marburg,undefined
[14] Germany,undefined
[15] Medizinisches Zentrum für Kinderheilkunde,undefined
[16] Philipps-Universität,undefined
[17] Deutschhausstrasse 12,undefined
[18] D-35033 Marburg,undefined
[19] Germany,undefined
来源
关键词
Key words Bartter’s syndrome; Antenatal Bartter’s syndrome; Hyperprostaglandin E syndrome; Gitelman’s syndrome; SLC12A1; SLC12A3; KCNJ1; CLCNKB;
D O I
暂无
中图分类号
学科分类号
摘要
 The term ”Bartter’s syndrome” comprises a set of autosomal recessively inherited renal tubular disorders characterized by hypokalemia, metabolic alkalosis, hyperreninism, and hyperaldosteronism but normal blood pressure. Additional clinical and biochemical features led to a classification into phenotypically different tubulopathies: Gitelman’s syndrome, hyperprostaglandin E syndrome (antenatal Bartter’s syndrome), and classic Bartter’s syndrome. Gitelman’s syndrome results from mutations in the SLC12A3 gene encoding the human thiazide-sensitive sodium chloride cotransporter, leading to impaired reabsorption of sodium chloride in the distal convoluted tubule. Genetic heterogeneity of hyperprostaglandin E syndrome has been demonstrated by identification of mutations in the SLC12A1 gene as well as in the KCNJ1 gene. Mutations in SLC12A1 coding for the bumetanide-sensitive sodium potassium 2 chloride cotransporter (NKCC2) cause defective reabsorption of sodium chloride in the thick ascending limb of Henle’s loop. Mutations in KCNJ1 leading to loss of function of the potassium channel ROMK disrupt potassium recycling back to the tubule lumen and inhibit thereby the NKCC2 activity. A third gene for hyperprostaglandin E syndrome has been mapped to the short arm of chromosome 1, and it remains to be evaluated whether other genes are involved in the pathogenesis of this disease. Classic Bartter’s syndrome has been demonstrated to result from defective chloride transport across the basolateral membrane in the distal nephron due to mutations in the chloride channel gene CLCNKB. This article reviews the molecular genetic approach that has led to identification of genetic defects underlying the different hypokalemic tubulopathies.
引用
收藏
页码:317 / 325
页数:8
相关论文
共 50 条
  • [1] The molecular genetic approach to "Bartter's syndrome"
    Károlyi, L
    Koch, MC
    Grzeschik, KH
    Seyberth, HW
    [J]. JOURNAL OF MOLECULAR MEDICINE-JMM, 1998, 76 (05): : 317 - 325
  • [2] Bartter's syndrome: clinical findings, genetic causes and therapeutic approach
    Carvalho Mrad, Flavia Cristina
    Morals Soares, Silvia Bouissou
    Wanderley de Menezes Silva, Luiz Alberto
    dos Anjos Menezes, Pedro Versiani
    Simoes-e-Silva, Ana Cristina
    [J]. WORLD JOURNAL OF PEDIATRICS, 2021, 17 (01) : 31 - 39
  • [3] Bartter’s syndrome: clinical findings, genetic causes and therapeutic approach
    Flavia Cristina Carvalho Mrad
    Sílvia Bouissou Morais Soares
    Luiz Alberto Wanderley de Menezes Silva
    Pedro Versiani dos Anjos Menezes
    Ana Cristina Simões-e-Silva
    [J]. World Journal of Pediatrics, 2021, 17 : 31 - 39
  • [4] Molecular pathophysiology of Bartter's syndrome
    Meade, P
    Sabath, E
    Gamba, G
    [J]. REVISTA DE INVESTIGACION CLINICA-CLINICAL AND TRANSLATIONAL INVESTIGATION, 2003, 55 (01): : 74 - 83
  • [5] MOLECULAR GENETIC DIAGNOSIS OF BARTTER SYNDROME (BS) TYPE III
    Garcia-Castano, Alejandro
    Perez De Nanclares, Gustavo
    Madrid, Alvaro
    Nadal, Inma
    Lucas, Elena
    Espinosa, Laura
    Fijo, Julia
    Espino, Mar
    Madariaga, Leire
    Aguirre, Mireia
    Castano, Luis
    Ariceta, Gema
    [J]. PEDIATRIC NEPHROLOGY, 2012, 27 (09) : 1671 - 1672
  • [6] Genetic basis of Bartter syndrome in Korea
    Lee, Beom Hee
    Cho, Hee Yeon
    Lee, HyunKyung
    Han, Kyoung Hee
    Kang, Hee Gyung
    Ha, Il Soo
    Lee, Joo Hoon
    Park, Young Seo
    Shin, Jae Il
    Lee, Dae-Yeol
    Kim, Su-Yung
    Choi, Yong
    Cheong, Hae Il
    [J]. NEPHROLOGY DIALYSIS TRANSPLANTATION, 2012, 27 (04) : 1516 - 1521
  • [7] Bartter's syndrome and pregnancy
    Clode, N
    Mendonça, E
    Stone, R
    Soares, L
    Cardoso, C
    Graça, LM
    Rosa, FC
    [J]. EUROPEAN JOURNAL OF OBSTETRICS GYNECOLOGY AND REPRODUCTIVE BIOLOGY, 1999, 82 (01): : 17 - 18
  • [8] Bartter's syndrome with hyperuricemia
    Palamarchuk, MI
    Kozlovskaya, LV
    Balkarov, IM
    [J]. TERAPEVTICHESKII ARKHIV, 2001, 73 (02): : 63 - 65
  • [9] Bartter's syndrome and pregnancy
    Peregrin-Alvarez, I
    Rodriguez-Casares, J
    Lucena-Herrera, C
    Arribas, F
    Castro, D
    [J]. EUROPEAN JOURNAL OF OBSTETRICS & GYNECOLOGY AND REPRODUCTIVE BIOLOGY, 2005, 121 (01) : 118 - 119
  • [10] Bartter's and Gitelman's syndrome
    Seyberth, Hannsjoerg W.
    Weber, Stefanie
    Koemhoff, Martin
    [J]. CURRENT OPINION IN PEDIATRICS, 2017, 29 (02) : 179 - 186