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Updated: May 26, 2026

Functional Assessment of Intestinal Tight Junction Barrier and Ion Permeability in Native Tissue by Ussing Chamber Technique
Published on: May 26, 2021
CLMP is required for intestinal development, and loss-of-function mutations cause congenital short-bowel syndrome
Christine S Van Der Werf1, Tara D Wabbersen, Nai-Hua Hsiao
1Department of Genetics, University Medical Center Groningen, University of Groningen, Groningen, The Netherlands.
Insights
Genetic mutations in the Coxsackie- and adenovirus receptor-like membrane protein (CLMP) cause congenital short-bowel syndrome (CSBS). This discovery identifies a key factor disrupting intestinal development and provides a new zebrafish model for CSBS research.
Area of Science:
- Genetics
- Developmental Biology
- Gastroenterology
Background:
- Congenital short-bowel syndrome (CSBS) is a condition characterized by a significantly shortened small intestine at birth.
- CSBS is often associated with intestinal malrotation and is considered an autosomal-recessive disorder.
- Previous research suggested a genetic basis for CSBS in consanguineous families.
Purpose of the Study:
- To identify the specific genetic factor responsible for congenital short-bowel syndrome (CSBS).
- To characterize the function of the identified gene and its role in intestinal development.
- To develop a relevant animal model for studying CSBS.
Main Methods:
- Genome-wide homozygosity mapping using single-nucleotide polymorphism arrays in CSBS patients.
- Analysis of gene expression patterns in human embryonic tissues.
- Functional studies using cell lines and a zebrafish model to investigate the impact of gene mutations.
Main Results:
- Loss-of-function mutations in the Coxsackie- and adenovirus receptor-like membrane protein (CLMP) gene were identified in CSBS patients.
- CLMP is a tight-junction-associated protein crucial for intestinal development, normally localized to the cell membrane.
- CLMP mutations disrupted its localization, leading to intestinal shortening and absence of goblet cells in a zebrafish model, mimicking CSBS.
Conclusions:
- Loss-of-function mutations in CLMP are causative for congenital short-bowel syndrome (CSBS) in humans.
- These mutations likely impair tight-junction formation, thereby disrupting normal intestinal development.
- A novel zebrafish model for CSBS has been successfully developed, aiding further research.
Background & Aims:
Short-bowel syndrome usually results from surgical resection of the small intestine for diseases such as intestinal atresias, volvulus, and necrotizing enterocolitis. Patients with congenital short-bowel syndrome (CSBS) are born with a substantial shortening of the small intestine, to a mean length of 50 cm, compared with a normal length at birth of 190-280 cm. They also are born with intestinal malrotation. Because CSBS occurs in many consanguineous families, it is considered to be an autosomal-recessive disorder. We aimed to identify and characterize the genetic factor causing CSBS.
Methods:
We performed homozygosity mapping using 610,000 K single-nucleotide polymorphism arrays to analyze the genomes of 5 patients with CSBS. After identifying a gene causing the disease, we determined its expression pattern in human embryos. We also overexpressed forms of the gene product that were and were not associated with CSBS in Chinese Hamster Ovary and T84 cells and generated a zebrafish model of the disease.
Results:
We identified loss-of-function mutations in Coxsackie- and adenovirus receptor-like membrane protein (CLMP) in CSBS patients. CLMP is a tight-junction-associated protein that is expressed in the intestine of human embryos throughout development. Mutations in CLMP prevented its normal localization to the cell membrane. Knock-down experiments in zebrafish resulted in general developmental defects, including shortening of the intestine and the absence of goblet cells. Because goblet cells are characteristic for the midintestine in zebrafish, which resembles the small intestine in human beings, the zebrafish model mimics CSBS.
Conclusions:
Loss-of-function mutations in CLMP cause CSBS in human beings, likely by interfering with tight-junction formation, which disrupts intestinal development. Furthermore, we developed a zebrafish model of CSBS.
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