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复合杂合性PKHD1变异导致广泛的导管板畸形。

Compound heterozygous PKHD1 variants cause a wide spectrum of ductal plate malformations.

作者信息

Courcet Jean-Benoît, Minello Anne, Prieur Fabienne, Morisse Laurent, Phelip Jean-Marc, Beurdeley Alain, Meynard Daniel, Massenet Denis, Lacassin Flore, Duffourd Yannis, Gigot Nadège, St-Onge Judith, Hillon Patrick, Vanlemmens Claire, Mousson Christiane, Cerceuil Jean-Pierre, Guiu Boris, Thevenon Julien, Thauvin-Robinet Christel, Jacquemin Emmanuel, Rivière Jean-Baptiste, Michel-Calemard Laurence, Faivre Laurence

机构信息

Service de p, é, diatrie 1 et de génétique médicale, Centre Hospitalo-Universitaire, Dijon, France.

Fédération Hospitalo-Universitaire Médecine Translationnelle et Anomalies du Développement (TRANSLAD), Centre Hospitalo-Universitaire, Dijon, France.

出版信息

Am J Med Genet A. 2015 Dec;167A(12):3046-53. doi: 10.1002/ajmg.a.37352. Epub 2015 Sep 8.

Abstract

Ductal plate malformations (DPM) present with a wide phenotypic spectrum comprising Von Meyenburg complexes (VMC), Caroli disease (CD), Caroli syndrome (CS), and autosomal recessive polycystic kidney disease (ARPKD). Variants in PKHD1 are responsible for ARPKD and CS with a high inter- and intra-familial phenotypic variability. Rare familial cases of CD had been reported and exceptional cases of CD are associated with PKHD1 variants. In a family of three siblings presenting with a wide spectrum of severity of DPM, we performed whole exome sequencing and identified two PKHD1 compound heterozygous variants (c.10444G>A; p.Arg3482Cys and c.5521C>T; p.Glu1841Lys), segregating with the symptoms. Two compound heterozygous PKHD1 variants, including one hypomorphic variant, were identified in two other familial cases of DPM with at least one patient presenting with CD. This report widens the phenotypic variability of PKHD1 variants to VMC, and others hepatic bile ducts malformations with inconstant renal phenotype in adults and highlights the important intra-familial phenotypic variability. It also showed that PKHD1 might be a major gene for CD. This work adds an example of the contribution of exome sequencing, not only in the discovery of new genes but also in expanding the phenotypic spectrum of well-known disease-associated genes, using reverse phenotyping.

摘要

胆管板畸形(DPM)表现出广泛的表型谱,包括冯·迈恩伯格复合体(VMC)、卡罗利病(CD)、卡罗利综合征(CS)和常染色体隐性多囊肾病(ARPKD)。PKHD1基因的变异导致ARPKD和CS,具有高度的家族间和家族内表型变异性。已有罕见的家族性CD病例报道,且特殊的CD病例与PKHD1变异相关。在一个有三名兄弟姐妹的家庭中,他们表现出广泛严重程度的DPM,我们进行了全外显子组测序,并鉴定出两个PKHD1复合杂合变异(c.10444G>A;p.Arg3482Cys和c.5521C>T;p.Glu1841Lys),与症状共分离。在另外两例DPM家族病例中鉴定出两个PKHD1复合杂合变异,其中至少有一名患者患有CD,包括一个低表达变异。本报告将PKHD1变异的表型变异性扩展至VMC,以及其他成人中肾表型不恒定的肝内胆管畸形,并突出了重要的家族内表型变异性。它还表明PKHD1可能是CD的主要基因。这项工作增加了一个外显子组测序贡献的例子,不仅在于发现新基因,还在于利用反向表型分析扩展已知疾病相关基因的表型谱。

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