Genetic characterization of congenital tufting enteropathy: epcam associated phenotype and involvement of SPINT2 in the syndromic form
HUMAN GENETICS
Authors: Salomon, Julie; Goulet, Olivier; Canioni, Danielle; Brousse, Nicole; Lemale, Julie; Tounian, Patrick; Coulomb, Aurore; Marinier, Evelyne; Hugot, Jean-Pierre; Ruemmele, Frank; Dufier, Jean-Louis; Roche, Olivier; Bodemer, Christine; Colomb, Virginie; Talbotec, Cecile; Lacaille, Florence; Campeotto, Florence; Cerf-Bensussan, Nadine; Janecke, Andreas R.; Mueller, Thomas; Koletzko, Sibylle; Bonnefont, Jean-Paul; Lyonnet, Stanislas; Munnich, Arnold; Poirier, Francoise; Smahi, Asma
Abstract
Congenital tufting enteropathy (CTE) is a rare and severe enteropathy recently ascribed to mutations in the epcam gene. Here we establish SPINT2, previously ascribed to congenital sodium diarrhea, as a second gene associated with CTE and report molecular and immunohistochemistry data in 57 CTE patients. Inclusion criteria were early onset diarrhea and intestinal insufficiency with the typical histological CTE abnormalities. The clinical phenotype was registered, the entire coding regions of epcam and SPINT2 sequenced, and immunostaining of EpCAM and SPINT2 performed on intestinal biopsies. An epcam mutation was involved in 41 patients (73 %) who mainly displayed isolated digestive symptoms. Mutations severely affected gene expression since the EpCAM signal on intestinal tissues was either undetectable or low and irregular. Twelve other patients (21 %) carried mutations in SPINT2, and were phenotypically characterized by systematic association with keratitis (p < 10(-4)) and, for half of them, with choanal atresia (p < 10(-4)). Dependency on parenteral nutrition (PN) was comparable in patients with epcam or SPINT2 mutations, but the frequent epcam mutation c.556-14A > G (abnormal splicing) was significantly associated with a better outcome (p = 0.032) with milder PN dependency to weaning in some cases. Finally, four patients (7 %) with isolated digestive symptoms had no detectable epcam or SPINT2 mutation. Two candidate genes, Elf3 and Claudin7, were excluded from this population. Our study allows us to separate CTE patients into at least three genetic classes, each with specific phenotypes. The genetics approach raises the question of the distinction between two congenital enteropathies. Our findings should help improve the diagnosis of CTE, guide toward strategies of long-term PN management, and limit indications for intestinal transplantation to life-threatening PN complications.
Mutations in SPINT2 Cause a Syndromic Form of Congenital Sodium Diarrhea
AMERICAN JOURNAL OF HUMAN GENETICS
Authors: Heinz-Erian, Peter; Mueller, Thomas; Krabichler, Birgit; Schranz, Melanie; Becker, Christian; Rueschendorf, Franz; Nuernberg, Peter; Rossier, Bernard; Vujic, Mihailo; Booth, Ian W.; Holmberg, Christer; Wijmenga, Cisca; Grigelioniene, Giedre; Kneepkens, C. M. Frank; Rosipal, Stefan; Mistrik, Martin; Kappler, Matthias; Michaud, Laurent; Doczy, Ludwig-Christoph; Siu, Victoria Mok; Krantz, Marie; Zoller, Heinz; Utermann, Gerd; Janecke, Andreas R.
Abstract
Autosomal-recessive congenital sodium diarrhea (CSD) is characterized by perinatal onset of a persistent watery diarrhea with nonproportionally high fecal sodium excretion. Defective jejunal brush-border Na+/H+ exchange has been reported in three sporadic patients, but the molecular basis of the disease has not been elucidated. We reviewed data from a large cohort of CSD patients (n = 24) and distinguished CSD associated with choanal or anal atresia, hypertelorism, and corneal erosions-i.e., a syndromic form of CSD-occurring in ten families from an isolated form-i.e., classic M-presenting in seven families. Patients from both groups have a high risk of mortality due to immediate electrolyte imbalances and complications from long-term parenteral nutrition in the first years of life, but survivors can eventually adapt to partial or complete enteral nutrition. A genome-wide SNP scan was applied and identified a homozygous c.593-1G -> A splicing mutation in SPINT2, encoding a Kunitz-type serine-protease inhibitor, in one extended kindred with syndromic CSD. The same mutation and four distinct, homozygous or compound heterozygous mutations (p.Y163C, c.1A -> T, c.337+2T -> C, c.553+2T -> A) were identified in all syndromic patients. No SPINT2 mutations were found in classic-CSD patients. SPINT2 mutations were associated with loss of protein synthesis or failure to inhibit the serine protease trypsin in vitro. We delineate syndromic CSD as a distinct disease entity caused by SPINT2 loss-of-function mutations. SPINT2 mutations might lead to an excess of yet unknown serine protease activity in affected tissues.