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https://doi.org/10.15252/emmm.201404967
Title: | TEX11 is mutated in infertile men with azoospermia and regulates genome-wide recombination rates in mouse | Authors: | Yang, F Silber, S Leu, N.A Oates, R.D Marszalek, J.D Skaletsky, H Brown, L.G Rozen, S Page, D.C Wang, P.J |
Keywords: | chromosome protein TEX11 protein unclassified drug mutant protein nonhistone protein TEX11 protein, human adult amino acid substitution animal experiment animal model animal tissue Article azoospermia chromosome pairing controlled study female frameshift mutation gene gene dosage gene mutation genetic screening human human tissue juvenile animal major clinical study male male infertility meiotic recombination missense mutation mouse nonhuman pachytene point mutation priority journal spermatogenesis spermatozoon count splice site mutation TEX11 gene transgenic mouse X chromosomal inheritance animal azoospermia genetic recombination genetics male infertility meiosis mutation Animals Azoospermia Chromosomal Proteins, Non-Histone Genetic Testing Humans Infertility, Male Male Meiosis Mice Mice, Transgenic Mutant Proteins Mutation Recombination, Genetic |
Issue Date: | 2015 | Citation: | Yang, F, Silber, S, Leu, N.A, Oates, R.D, Marszalek, J.D, Skaletsky, H, Brown, L.G, Rozen, S, Page, D.C, Wang, P.J (2015). TEX11 is mutated in infertile men with azoospermia and regulates genome-wide recombination rates in mouse. EMBO Molecular Medicine 7 (9) : 1198-1210. ScholarBank@NUS Repository. https://doi.org/10.15252/emmm.201404967 | Rights: | Attribution 4.0 International | Abstract: | Genome-wide recombination is essential for genome stability, evolution, and speciation. Mouse Tex11, an X-linked meiosis-specific gene, promotes meiotic recombination and chromosomal synapsis. Here, we report that TEX11 is mutated in infertile men with non-obstructive azoospermia and that an analogous mutation in the mouse impairs meiosis. Genetic screening of a large cohort of idiopathic infertile men reveals that TEX11 mutations, including frameshift and splicing acceptor site mutations, cause infertility in 1% of azoospermic men. Functional evaluation of three analogous human TEX11 missense mutations in transgenic mouse models identified one mutation (V748A) as a potential infertility allele and found two mutations non-causative. In the mouse model, an intronless autosomal Tex11 transgene functionally substitutes for the X-linked Tex11 gene, providing genetic evidence for the X-to-autosomal retrotransposition evolution phenomenon. Furthermore, we find that TEX11 protein levels modulate genome-wide recombination rates in both sexes. These studies indicate that TEX11 alleles affecting expression level or substituting single amino acids may contribute to variations in recombination rates between sexes and among individuals in humans. © 2015 The Authors. | Source Title: | EMBO Molecular Medicine | URI: | https://scholarbank.nus.edu.sg/handle/10635/180942 | ISSN: | 17574676 | DOI: | 10.15252/emmm.201404967 | Rights: | Attribution 4.0 International |
Appears in Collections: | Staff Publications Elements |
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