Meiosis is particularly vulnerable to interruption and arrest at prophase I stages, which is when two key events are occurring: chromosome recombination/synapsis and passage of germ cells from the basal to the adluminal compartment of the seminiferous epithelium, an environment that fosters completion of meiosis. Although both meiotic recombination events autonomous to the germ cell and seminiferous epithelium events mediated by the Sertoli cells are required for progress beyond this early stage of meiotic prophase, most of the mechanisms remain poorly understood. Mutations generated by the ReproGenomics Program provide opportunities to investigate the testicular regulation of critical events of early meiotic prophase. The spcar1-4, spermatocyte arrest 1-4, mutations cause arrest at this early and vulnerable stage of prophase.
In Aim 1, the causes and consequences for the germ cell of meiotic arrest will be determined using techniques of molecular cytology and gene expression analysis. Because there is no a priori knowledge whether these mutations act in the germ cell or in the soma to cause spermatocyte arrest, this will be resolved in Aim 2 by spermatogonial stem cell (SSC) transplantation assays.
In Aim 3, the downstream effects of the mutations on Sertoli cells will be investigated, using meiotic arrest mutations as a tool to examine aspects of cell-cell interactions and gene expression critical for Sertoli cell maturation and testis differentiation. The genomic regions defined for these mutations do not include any genes known to be involved in meiotic pathways, ensuring that this work will, in the analyses of Aim 4, identify new or unsuspected genes and mechanisms, either intrinsic or extrinsic to the germ cell, essential for meiotic progress. Together the four aims will tackle different aspects of the meiotic arrest phenotypes of different mutations affecting the same stage of meiosis.

Agency
National Institute of Health (NIH)
Institute
Eunice Kennedy Shriver National Institute of Child Health & Human Development (NICHD)
Type
Research Program Projects (P01)
Project #
5P01HD042137-09
Application #
8325959
Study Section
Special Emphasis Panel (ZHD1)
Project Start
Project End
Budget Start
2011-07-01
Budget End
2012-06-30
Support Year
9
Fiscal Year
2011
Total Cost
$163,695
Indirect Cost
Name
Jackson Laboratory
Department
Type
DUNS #
042140483
City
Bar Harbor
State
ME
Country
United States
Zip Code
04609
Hays, E; Majchrzak, N; Daniel, V et al. (2017) Spermatogenesis associated 22 is required for DNA repair and synapsis of homologous chromosomes in mouse germ cells. Andrology 5:299-312
Fujiwara, Yasuhiro; Matsumoto, Hirokazu; Akiyama, Kouyou et al. (2015) An ENU-induced mutation in the mouse Rnf212 gene is associated with male meiotic failure and infertility. Reproduction 149:67-74
Sun, Fengyun; Fujiwara, Yasuhiro; Reinholdt, Laura G et al. (2015) Nuclear localization of PRDM9 and its role in meiotic chromatin modifications and homologous synapsis. Chromosoma 124:397-415
Pattabiraman, Shrivatsav; Baumann, Claudia; Guisado, Daniela et al. (2015) Mouse BRWD1 is critical for spermatid postmeiotic transcription and female meiotic chromosome stability. J Cell Biol 208:53-69
Harris, Tanya P; Schimenti, Kerry J; Munroe, Robert J et al. (2014) IQ motif-containing G (Iqcg) is required for mouse spermiogenesis. G3 (Bethesda) 4:367-72
Bentson, L F; Agbor, V A; Agbor, L N et al. (2013) New point mutation in Golga3 causes multiple defects in spermatogenesis. Andrology 1:440-50
Luo, Mengcheng; Yang, Fang; Leu, N Adrian et al. (2013) MEIOB exhibits single-stranded DNA-binding and exonuclease activities and is essential for meiotic recombination. Nat Commun 4:2788
Li, Xin Zhiguo; Roy, Christian K; Dong, Xianjun et al. (2013) An ancient transcription factor initiates the burst of piRNA production during early meiosis in mouse testes. Mol Cell 50:67-81
Liu, Ye; Zaun, Hans C; Orlowski, John et al. (2013) CHP1-mediated NHE1 biosynthetic maturation is required for Purkinje cell axon homeostasis. J Neurosci 33:12656-69
Fujiwara, Yasuhiro; Ogonuki, Narumi; Inoue, Kimiko et al. (2013) t-SNARE Syntaxin2 (STX2) is implicated in intracellular transport of sulfoglycolipids during meiotic prophase in mouse spermatogenesis. Biol Reprod 88:141

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