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A de novo paradigm for male infertility
by
Houston, B. J.
, Smith, H. E.
, Aston, K. I.
, Veltman, J. A.
, Batty, L. E.
, Kliesch, S.
, Gonzaga-Jauregui, C.
, Mikulasova, A.
, Astuti, G. D. N.
, Oud, M. S.
, Holt, G. S.
, Cockell, S.
, D’Hauwers, K. W. M.
, Xavier, M. J.
, Riera-Escamilla, A.
, Tüttelmann, F.
, Friedrich, C.
, O’Bryan, M. K.
, de Vries, P. F.
, Alobaidi, B. K. S.
, Coxhead, J.
, van der Heijden, G. W.
, Fleischer, K.
, Schaafsma, E.
, Sheth, H.
, Mastrorosa, F. K.
, McEleny, K.
, Turner, H.
, Smits, R. M.
, Ismail, H.
, Greenwood, J.
, Gilissen, C.
, Elliott, D. J.
, Braat, D. D. M.
, Ramos, L.
, Krausz, C.
, Santibanez-Koref, M.
, Vissers, L. E. L. M.
, Conrad, D. F.
, Nagirnaja, L.
in
13/51
/ 14/32
/ 45/22
/ 45/23
/ 45/77
/ 631/208/2489/144
/ 631/208/514/1948
/ 692/699/2732/1577
/ Adult
/ Azoospermia - genetics
/ Azoospermia - pathology
/ Biochemistry
/ Case-Control Studies
/ Cell Cycle Proteins - deficiency
/ Cell Cycle Proteins - genetics
/ Chemistry(all)
/ DNA-Binding Proteins - deficiency
/ DNA-Binding Proteins - genetics
/ Exome
/ Exome Sequencing
/ Fertility
/ Fitness
/ Gene Expression
/ Gene Expression Profiling
/ Genes
/ Genetic Predisposition to Disease
/ Genetics and Molecular Biology(all)
/ Humanities and Social Sciences
/ Humans
/ Infertility
/ Loss of Function Mutation
/ Male
/ Men
/ Missense mutation
/ mRNA
/ multidisciplinary
/ Mutation
/ Mutation, Missense
/ Oligospermia - genetics
/ Oligospermia - pathology
/ Phenotypes
/ Physics and Astronomy(all)
/ Reproductive fitness
/ RNA-Binding Proteins - genetics
/ Science
/ Science (multidisciplinary)
/ Splicing
/ Tumor Suppressor Proteins - deficiency
/ Tumor Suppressor Proteins - genetics
2022
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A de novo paradigm for male infertility
by
Houston, B. J.
, Smith, H. E.
, Aston, K. I.
, Veltman, J. A.
, Batty, L. E.
, Kliesch, S.
, Gonzaga-Jauregui, C.
, Mikulasova, A.
, Astuti, G. D. N.
, Oud, M. S.
, Holt, G. S.
, Cockell, S.
, D’Hauwers, K. W. M.
, Xavier, M. J.
, Riera-Escamilla, A.
, Tüttelmann, F.
, Friedrich, C.
, O’Bryan, M. K.
, de Vries, P. F.
, Alobaidi, B. K. S.
, Coxhead, J.
, van der Heijden, G. W.
, Fleischer, K.
, Schaafsma, E.
, Sheth, H.
, Mastrorosa, F. K.
, McEleny, K.
, Turner, H.
, Smits, R. M.
, Ismail, H.
, Greenwood, J.
, Gilissen, C.
, Elliott, D. J.
, Braat, D. D. M.
, Ramos, L.
, Krausz, C.
, Santibanez-Koref, M.
, Vissers, L. E. L. M.
, Conrad, D. F.
, Nagirnaja, L.
in
13/51
/ 14/32
/ 45/22
/ 45/23
/ 45/77
/ 631/208/2489/144
/ 631/208/514/1948
/ 692/699/2732/1577
/ Adult
/ Azoospermia - genetics
/ Azoospermia - pathology
/ Biochemistry
/ Case-Control Studies
/ Cell Cycle Proteins - deficiency
/ Cell Cycle Proteins - genetics
/ Chemistry(all)
/ DNA-Binding Proteins - deficiency
/ DNA-Binding Proteins - genetics
/ Exome
/ Exome Sequencing
/ Fertility
/ Fitness
/ Gene Expression
/ Gene Expression Profiling
/ Genes
/ Genetic Predisposition to Disease
/ Genetics and Molecular Biology(all)
/ Humanities and Social Sciences
/ Humans
/ Infertility
/ Loss of Function Mutation
/ Male
/ Men
/ Missense mutation
/ mRNA
/ multidisciplinary
/ Mutation
/ Mutation, Missense
/ Oligospermia - genetics
/ Oligospermia - pathology
/ Phenotypes
/ Physics and Astronomy(all)
/ Reproductive fitness
/ RNA-Binding Proteins - genetics
/ Science
/ Science (multidisciplinary)
/ Splicing
/ Tumor Suppressor Proteins - deficiency
/ Tumor Suppressor Proteins - genetics
2022
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A de novo paradigm for male infertility
by
Houston, B. J.
, Smith, H. E.
, Aston, K. I.
, Veltman, J. A.
, Batty, L. E.
, Kliesch, S.
, Gonzaga-Jauregui, C.
, Mikulasova, A.
, Astuti, G. D. N.
, Oud, M. S.
, Holt, G. S.
, Cockell, S.
, D’Hauwers, K. W. M.
, Xavier, M. J.
, Riera-Escamilla, A.
, Tüttelmann, F.
, Friedrich, C.
, O’Bryan, M. K.
, de Vries, P. F.
, Alobaidi, B. K. S.
, Coxhead, J.
, van der Heijden, G. W.
, Fleischer, K.
, Schaafsma, E.
, Sheth, H.
, Mastrorosa, F. K.
, McEleny, K.
, Turner, H.
, Smits, R. M.
, Ismail, H.
, Greenwood, J.
, Gilissen, C.
, Elliott, D. J.
, Braat, D. D. M.
, Ramos, L.
, Krausz, C.
, Santibanez-Koref, M.
, Vissers, L. E. L. M.
, Conrad, D. F.
, Nagirnaja, L.
in
13/51
/ 14/32
/ 45/22
/ 45/23
/ 45/77
/ 631/208/2489/144
/ 631/208/514/1948
/ 692/699/2732/1577
/ Adult
/ Azoospermia - genetics
/ Azoospermia - pathology
/ Biochemistry
/ Case-Control Studies
/ Cell Cycle Proteins - deficiency
/ Cell Cycle Proteins - genetics
/ Chemistry(all)
/ DNA-Binding Proteins - deficiency
/ DNA-Binding Proteins - genetics
/ Exome
/ Exome Sequencing
/ Fertility
/ Fitness
/ Gene Expression
/ Gene Expression Profiling
/ Genes
/ Genetic Predisposition to Disease
/ Genetics and Molecular Biology(all)
/ Humanities and Social Sciences
/ Humans
/ Infertility
/ Loss of Function Mutation
/ Male
/ Men
/ Missense mutation
/ mRNA
/ multidisciplinary
/ Mutation
/ Mutation, Missense
/ Oligospermia - genetics
/ Oligospermia - pathology
/ Phenotypes
/ Physics and Astronomy(all)
/ Reproductive fitness
/ RNA-Binding Proteins - genetics
/ Science
/ Science (multidisciplinary)
/ Splicing
/ Tumor Suppressor Proteins - deficiency
/ Tumor Suppressor Proteins - genetics
2022
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Journal Article
A de novo paradigm for male infertility
2022
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Overview
De novo mutations are known to play a prominent role in sporadic disorders with reduced fitness. We hypothesize that de novo mutations play an important role in severe male infertility and explain a portion of the genetic causes of this understudied disorder. To test this hypothesis, we utilize trio-based exome sequencing in a cohort of 185 infertile males and their unaffected parents. Following a systematic analysis, 29 of 145 rare (MAF < 0.1%) protein-altering de novo mutations are classified as possibly causative of the male infertility phenotype. We observed a significant enrichment of loss-of-function de novo mutations in loss-of-function-intolerant genes (
p
-value = 1.00 × 10
−5
) in infertile men compared to controls. Additionally, we detected a significant increase in predicted pathogenic de novo missense mutations affecting missense-intolerant genes (
p
-value = 5.01 × 10
−4
) in contrast to predicted benign de novo mutations. One gene we identify,
RBM5
, is an essential regulator of male germ cell pre-mRNA splicing and has been previously implicated in male infertility in mice. In a follow-up study, 6 rare pathogenic missense mutations affecting this gene are observed in a cohort of 2,506 infertile patients, whilst we find no such mutations in a cohort of 5,784 fertile men (
p
-value = 0.03). Our results provide evidence for the role of de novo mutations in severe male infertility and point to new candidate genes affecting fertility.
Germline de novo mutations can impact individual fitness, but their role in human male infertility is understudied. Trio-based exome sequencing identifies many new candidate genes affecting male fertility, including an essential regulator of male germ cell pre-mRNA splicing.
Publisher
Nature Publishing Group UK,Nature Publishing Group,Nature Portfolio
Subject
/ 14/32
/ 45/22
/ 45/23
/ 45/77
/ Adult
/ Cell Cycle Proteins - deficiency
/ Cell Cycle Proteins - genetics
/ DNA-Binding Proteins - deficiency
/ DNA-Binding Proteins - genetics
/ Exome
/ Fitness
/ Genes
/ Genetic Predisposition to Disease
/ Genetics and Molecular Biology(all)
/ Humanities and Social Sciences
/ Humans
/ Male
/ Men
/ mRNA
/ Mutation
/ RNA-Binding Proteins - genetics
/ Science
/ Splicing
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