Identification of a missense variant in CLDN2 in obstructive azoospermia
JOURNAL OF HUMAN GENETICS
Authors: Askari, Masomeh; Karamzadeh, Razieh; Ansari-Pour, Naser; Karimi-Jafari, Mohammad Hossein; Almadani, Navid; Gilani, Mohammad Ali Sadighi; Gourabi, Hamid; Dizaj, Ahmad Vosough Taghi; Meybodi, Anahita Mohseni; Sadeghi, Mehdi; Bashamboo, Anu; McElreavey, Ken; Totonchi, Mehdi
Abstract
Obstructive azoospermia (OA), defined as an obstruction in any region of the male genital tract, accounts for 40% of all azoospermia cases. Of all OA cases, similar to 30% are thought to have a genetic origin, however, hitherto, the underlying genetic etiology of the majority of these cases remain unknown. To address this, we took a family-based whole-exome sequencing approach to identify causal variants of OA in a multiplex family with epidydimal obstruction. A novel gain-of-function missense variant in CLDN2 (c.481G>C; p.Gly161Arg) was found to co-segregate with the phenotype, consistent with the X-linked inheritance pattern observed in the pedigree. To assess the pathogenicity of this variant, the wild and mutant protein structures were modeled and their potential for strand formation in multimeric form was assessed and compared. The results showed that dimeric and tetrameric arrangements of Claudin-2 were not only reduced, but were also significantly altered by this single residue change. We, therefore, envisage that this amino acid change likely forms a polymeric discontinuous strand, which may lead to the disruption of tight junctions among epithelial cells. This missense variant is thus likely to be responsible for the disruption of the blood-epididymis barrier, causing dislodged epithelial cells to clog the genital tract, hence causing OA. This study not only sheds light on the underlying pathobiology of OA, but also provides a basis for more efficient diagnosis in the clinical setting.
Expression of Mucins and Claudins in the Colon during Acute and Chronic Experimental Colitis
BULLETIN OF EXPERIMENTAL BIOLOGY AND MEDICINE
Authors: Zolotova, N. A.; Polikarpova, A. V.; Khochanskii, D. N.; Makarova, O. V.; Mikhailova, L. P.
Abstract
We studied changes in the expression of mRNA for mucins and claudins in the medial part of the colon in male C57Bl/6 mice on the model of acute and chronic colitis induced by substitution of drinking water with 1% solution of dextran sodium sulphate for 5 days. In acute colitis, the expression of the main structural component of glycocalyx, mucin Muc3, decreased and expression of pore-forming claudin Cldn2 increased, which reflected enhanced permeability of tight junctions. In the chronic colitis group, in comparison with the normal group, we observed an increase in expression of mRNA of main structural mucus component Muc2, enhanced of expression of Muc1 associated with carcinogenesis, and reduced expression of Muc13, which led to a more severe course of colitis; the expression of pore-forming claudin Cldn2 was elevated. These findings indicate that the imbalance in the expression of mucins and claudins plays an important role in the mechanisms of development of acute and chronic colitis.