The frequency and spectrum of mutations and the IVS8- T polymorphism of the CFTR gene have been studied in a sample of 963 in Russian infertile men. Mutations have been found in 48 out of 1926 analyzed chromosomes (2.5%) in the heterozygous state (n = 46) and in the compound heterozygote L138ins/N1303K (n = 1/n = 1). A CFTR gene mutation was combined with the 5T allele (mutCFTR/5T) in 11 patients. The following mutations have been found: F508del (n = 18), CFTRdele2,3 (21kb) (n = 9), W1282X (n = 7), 2143delT (n = 4), 3849+10kbC>T (n = 2), L138ins (n = 2), 1677delTA (n = 1), 2184insA (n = 1), 3821delT (n = 1), G542X (n = 1), N1303K (n = 1), and R334W (n = 1). The F508del mutation is the most frequent; it has been detected in 37.5% of the affected chromosomes. The total proportion of four mutations (F508del, CFTRdele2,3 (21kb), W1282X, and 2143delT) is about 79% of all mutations found. The 5T allele has been found in 10.9% infertile men and 4.8% of control men. Significant differences in the frequency of the IVS8-5T variant of the CFTR gene have been found between these groups (p = 0.005), as well as between infertile patients without mutations and control men (p = 0.019). In total, the mutations and/or 5T allele have been found in 14.6% of the patients examined. These data indicate increased frequencies of the mutations of the CFTR gene and its allele variant IVS8-5T in Russian infertile men.
Download full-text PDF |
Source |
---|
Pediatr Nephrol
January 2025
Department of Pediatric Nephrology, Istanbul University- Cerrahpasa, Cerrahpasa Faculty of Medicine, 34098, Istanbul, Turkey.
Autosomal recessive proximal renal tubular acidosis (AR-pRTA) with ocular abnormalities is a rare syndrome caused by variants in the SLC4A4 gene, which encodes Na/HCO3 cotransporter (NBCe1). The syndrome primarily affects the kidneys, but also causes extra-renal manifestations. Pancreatic type NBCe1 is located at the basolateral membrane of the pancreatic ductal cells and together with CFTR chloride channel, it is involved in bicarbonate secretion.
View Article and Find Full Text PDFBiochem Pharmacol
January 2025
Department of Biomedical Sciences, University of Padova, 35131 Padova, Italy,. Electronic address:
Sarcoglycanopathies are rare forms of severe muscular dystrophies currently without a therapy. Mutations in sarcoglycan (SG) genes cause the reduction or absence of the SG-complex, a tetramer located in the sarcolemma that plays a protective role during muscle contraction. Missense mutations in SGCA, which cause α-sarcoglycanopathy, otherwise known as LGMD2D/R3, lead to folding defective forms of α-SG that are discarded by the cell quality control.
View Article and Find Full Text PDFInt J Mol Sci
January 2025
Laboratory of Genome Editing, Research Centre for Medical Genetics, Moskvorechye, 1, 115522 Moscow, Russia.
Cystic fibrosis (CF) is an autosomal recessive disorder caused by mutations in the gene. Currently, CFTR modulators are the most effective treatment for CF; however, they may not be suitable for all patients. A representative and convenient model is needed to screen therapeutic agents under development.
View Article and Find Full Text PDFBMJ Open
January 2025
Genetics and Molecular Pathology, SA Pathology, North Adelaide, South Australia, Australia
Objectives: To determine the diagnostic yield of cystic fibrosis (CF) using a two-tiered genetic testing approach. Although newborn screening includes CF, this typically only covers a selection of common genetic variants, and with over 2000 reported in the cystic fibrosis transmembrane conductance regulator (CFTR) gene, we hypothesised that patients will be missed and present clinically later in life.
Design: A retrospective study over a 5-year period (January 2018-December 2022).
Mol Biol Rep
January 2025
Centre for Applied Molecular Biology, University of the Punjab, Lahore, Pakistan.
Background: Pathogenic mutations in the CFTR gene disrupt the normal function of the chloride ion channel CFTR protein, resulting in Cystic Fibrosis (C.F.).
View Article and Find Full Text PDFEnter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!