Search Results - "Baarends, W M"
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1
Sequencing of a ‘mouse azoospermia’ gene panel in azoospermic men: identification of RNF212 and STAG3 mutations as novel genetic causes of meiotic arrest
Published in Human reproduction (Oxford) (04-06-2019)“…Abstract STUDY QUESTION What is the diagnostic potential of next generation sequencing (NGS) based on a ‘mouse azoospermia’ gene panel in human non-obstructive…”
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2
DNA repair mechanisms and gametogenesis
Published in Reproduction (Cambridge, England) (01-01-2001)“…In mammals, there is a complex and intriguing relationship between DNA repair and gametogenesis. DNA repair mechanisms are involved not only in the repair of…”
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3
Evolution of testis‐specific kinases TSSK1B and TSSK2 in primates
Published in Andrology (Oxford) (01-01-2013)“…Summary The testis‐specific serine/threonine protein kinases TSSK1 and TSSK2 are known to be essential for male fertility, in mice. The enzymes are present in…”
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4
Mutations that affect meiosis in male mice influence the dynamics of the mid-preleptotene and bouquet stages
Published in Experimental cell research (15-11-2006)“…Meiosis pairs and segregates homologous chromosomes and thereby forms haploid germ cells to compensate the genome doubling at fertilization. Homologue pairing…”
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Anti-müllerian hormone and anti-müllerian hormone type II receptor messenger ribonucleic acid expression in rat ovaries during postnatal development, the estrous cycle, and gonadotropin-induced follicle growth
Published in Endocrinology (Philadelphia) (01-11-1995)“…During fetal development, anti-müllerian hormone (AMH) is produced only by Sertoli cells, but postnatally, granulosa cells also produce this peptide…”
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Specific aspects of the ubiquitin system in spermatogenesis
Published in Journal of endocrinological investigation (01-10-2000)“…The ubiquitin system is involved in numerous cellular processes, regulating the amounts and/or activities of specific proteins through posttranslational…”
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Inactivation of the HR6B Ubiquitin-Conjugating DNA Repair Enzyme in Mice Causes Male Sterility Associated with Chromatin Modification
Published in Cell (06-09-1996)“…The ubiquitin-conjugating yeast enzyme RAD6 and its human homologs hHR6A and hHR6B are implicated in postreplication repair and damage-induced mutagenesis. The…”
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8
Chromatin dynamics in the male meiotic prophase
Published in Cytogenetic and genome research (01-01-2003)“…During the male meiotic prophase in mouse and man, pairing and recombination of homologous chromosomes is accompanied by changes in chromatin structure. In…”
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9
Immunoexpression of testis-specific histone 2B in human spermatozoa and testis tissue
Published in Human reproduction (Oxford) (01-06-1998)“…During mammalian spermatogenesis, the chromatin of the spermatogenic cells is profoundly reorganized. Somatic histones are partly replaced by testis-specific…”
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A novel member of the transmembrane serine/threonine kinase receptor family is specifically expressed in the gonads and in mesenchymal cells adjacent to the mullerian duct
Published in Development (Cambridge) (01-01-1994)“…The activin and TGF-beta type II receptors are members of a separate subfamily of transmembrane receptors with intrinsic protein kinase activity, which also…”
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Anti-müllerian hormone and anti-müllerian hormone type II receptor messenger ribonucleic acid expression during postnatal testis development and in the adult testis of the rat
Published in Endocrinology (Philadelphia) (01-12-1995)“…Anti-müllerian hormone (AMH) induces degeneration of the müllerian ducts during male sex differentiation and may have additional functions concerning gonadal…”
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12
Characterization of the human androgen receptor transcription unit
Published in The Journal of biological chemistry (15-06-1991)“…A full length human androgen receptor (hAR) cDNA was constructed from cDNA and genomic clones. Structurally the 10.6-kilobase (kb) hAR cDNA consists of a long…”
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13
Testis-Specific Expression of a Functional Retroposon Encoding Glucose-6-phosphate Dehydrogenase in the Mouse
Published in Genomics (San Diego, Calif.) (01-05-1997)“…The X-chromosomal geneglucose-6-phosphate dehydrogenase(G6pd) is known to be expressed in most cell types of mammalian species. In the mouse, we have detected…”
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14
Targeted inactivation of mouse RAD52 reduces homologous recombination but not resistance to ionizing radiation
Published in Molecular and cellular biology (01-11-1998)“…The RAD52 epistasis group is required for recombinational repair of double-strand breaks (DSBs) and shows strong evolutionary conservation. In Saccharomyces…”
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15
Histone Ubiquitination and Chromatin Remodeling in Mouse Spermatogenesis
Published in Developmental biology (15-03-1999)“…Male infertility inHR6Bknockout mice is associated with impairment of spermatogenesis. TheHR6Bgene is a mammalian, autosomal homolog of theSaccharomyces…”
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16
Follitropin receptor down-regulation involves a cAMP-dependent post-transcriptional decrease of receptor mRNA expression
Published in Molecular and cellular endocrinology (01-07-1991)“…The regulation by FSH (follitropin; follicle-stimulating hormone) of FSH receptor mRNA and protein (FSH binding) was studied using cultured Sertoli cells…”
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Molecular and cellular events in spermatogenesis
Published in Human reproduction (Oxford) (01-10-1995)Get more information
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18
Transcriptional regulation of androgen receptor gene expression in Sertoli cells and other cell types
Published in Molecular and cellular endocrinology (01-10-1992)“…Regulation of androgen receptor (AR) mRNA expression was studied in Sertoli cells and peritubular myoid cells isolated from immature rat testis, and in the…”
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The rat androgen receptor gene promoter
Published in Molecular and cellular endocrinology (12-11-1990)“…The androgen receptor (AR) is activated upon binding of testosterone or dihydrotestosterone and exerts regulatory effects on gene expression in androgen target…”
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20
Molecular and cellular mechanisms in spermatogenesis
Published in Baillière's best practice & research. Clinical endocrinology & metabolism (01-09-2000)“…Mammalian spermatogenesis shows a strict control of many specific molecular and cellular events. This control involves Sertoli cell–germ cell interaction, as…”
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