Primary cilia have recently been identified in mammalian spermatocytes, but their developmental regulation during testicular maturation remains poorly understood. Here, we investigate the dynamics of ciliogenesis during mouse puberty and show that primary cilia are not an intrinsic feature of spermatocytes during the first wave of meiosis, initiated at 8 days post partum (dpp). Ciliogenesis begins only at day 20 dpp, where cilia are detected across all stages of prophase I, indicating no direct association with synapsis or desynapsis. We further found that Aurora kinase A is associated with cilia disassembly in late diplotene and that spermatocytes retaining a polymerized cilium fail to assemble a bipolar spindle. In addition, proteomic analysis defined the 19–21 dpp period as a key developmental window associated with ciliogenesis and flagellogenesis. We also identified ciliated spermatocytes in the human testis, providing the first evidence of meiotic cilia in human meiocytes. This work reveals that ciliogenesis is a developmentally regulated process during testicular maturation in mouse.
I. Pérez-Moreno, P. López-Jiménez, H. Zapata-Polo et al.· Frontiers in Cell and Develo...· 0 citations
It is found that these inhibitors reduce TDP-43 phosphorylation levels in neuroblastoma cells and FTD patient-derived models, and restores cognitive deficits, conferred neuroprotection in the frontal cortex, and reduced microglial activation in an FTD-TDP mouse model, supporting its therapeutic potential.
Cecilia Sanchez-Santos, Alberto Jiménez-Amor, Loreto Martínez-González et al.· Journal of Medicinal Chemist...· 0 citations
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