sameAs
The Role of the Immune Response in Chlamydia trachomatis Infection of the Male Genital Tract: A Double-Edged SwordmiRNA and mammalian male germ cellsThe role of the molecular chaperone heat shock protein A2 (HSPA2) in regulating human sperm-egg recognitionA novel germ cell protein, SPIF (sperm PKA interacting factor), is essential for the formation of a PKA/TCP11 complex that undergoes conformational and phosphorylation changes upon capacitationIdentification of RARhoGAP, a novel putative RhoGAP gene expressed in male germ cellsIdentification and characterization of a novel Mt-retrotransposon highly represented in the female mouse germline.Optimisation of handling, activation and assessment procedures for Bufo marinus spermatozoa.Identification of sites of STAT3 action in the female reproductive tract through conditional gene deletionReduced ability to recover from spindle disruption and loss of kinetochore spindle assembly checkpoint proteins in oocytes from aged mice.Differential roles of HOW in male and female Drosophila germline differentiation.A unique combination of male germ cell miRNAs coordinates gonocyte differentiation.Drosophila Rbp6 is an orthologue of vertebrate Msi-1 and Msi-2, but does not function redundantly with dMsi to regulate germline stem cell behaviourThe BRCA1-binding protein BRAP2 can act as a cytoplasmic retention factor for nuclear and nuclear envelope-localizing testicular proteins.RBM5 is a male germ cell splicing factor and is required for spermatid differentiation and male fertilityThe RNA-binding protein Musashi is required intrinsically to maintain stem cell identity.British Andrology Society guidelines for the assessment of post vasectomy semen samples (2002).Next Generation Sequencing Analysis Reveals Segmental Patterns of microRNA Expression in Mouse Epididymal Epithelial Cells.RNA binding proteins in spermatogenesis: an in depth focus on the Musashi family.Knockout of RNA Binding Protein MSI2 Impairs Follicle Development in the Mouse Ovary: Characterization of MSI1 and MSI2 during FolliculogenesisKif4 Is Essential for Mouse Oocyte MeiosisSmall molecule Hedgehog pathway antagonists.Assessment of microRNA expression in mouse epididymal epithelial cells and spermatozoa by next generation sequencing.Intracellular calcium measurements in individual human sperm demonstrate that the majority can respond to progesterone.New insights into the molecular mechanisms of sperm-egg interaction.Immune regulation of ovarian development: programming by neonatal immune challenge.Germ cell specific overactivation of WNT/βcatenin signalling has no effect on folliculogenesis but causes fertility defects due to abnormal foetal developmentSpermatids do it differently! Paip2a-the essential regulator of spermiogenesis?Characterisation of mouse epididymosomes reveals a complex profile of microRNAs and a potential mechanism for modification of the sperm epigenome.Awakening the oocyte: controlling primordial follicle development.Dynamin 2 is essential for mammalian spermatogenesis.The in vivo expression of dipeptidyl peptidases 8 and 9.The rise of testicular germ cell tumours: the search for causes, risk factors and novel therapeutic targets.Contraception targets in Mammalian ovarian development.Chlamydia muridarum infection-induced destruction of male germ cells and sertoli cells is partially prevented by Chlamydia major outer membrane protein-specific immune CD4 cells.Translational control in germ cell development: A role for the RNA-binding proteins Musashi-1 and Musashi-2.Through the smoke: use of in vivo and in vitro cigarette smoking models to elucidate its effect on female fertility.Analysis of the small non-protein-coding RNA profile of mouse spermatozoa reveals specific enrichment of piRNAs within mature spermatozoa.The lipid peroxidation product 4-hydroxynonenal contributes to oxidative stress-mediated deterioration of the ageing oocyte.Non-coding RNA in Spermatogenesis and Epididymal Maturation.Developmental expression of the dynamin family of mechanoenzymes in the mouse epididymis.
P50
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