Characterizing the mechanisms underlying follicle development in the ovary is crucial to understanding female fertility and is an area of increasing research interest. The RNA binding protein Musashi is essential for post-transcriptional regulation of oocyte maturation in Xenopus and is expressed during ovarian development in Drosophila. In mammals Musashi is important for spermatogenesis and male fertility, but its role in the ovary has yet to be characterized. In this study we determined the expression of mammalian Musashi proteins MSI1 and MSI2 during mouse folliculogenesis, and through the use of a MSI2-specific knockout mouse model we identified that MSI2 is essential for normal follicle development. Time-course characterization of MSI...
In the mammalian ovary, the dormant primordial follicles are the source of developing follicles and ...
A key goal of regenerative medicine is an understanding of the genetic factors that define the prope...
Spermatogenesis is a complex developmental process where-by diploid spermatogenic stem cells become ...
Characterizing the mechanisms underlying follicle development in the ovary is crucial to understandi...
Characterizing the mechanisms underlying follicle development in the ovary is crucial to understandi...
Characterizing the mechanisms underlying follicle development in the ovary is crucial to understandi...
Research Doctorate - Doctor of Philosophy (PhD)The production of healthy, euploid oocytes from a fin...
Recent studies have shown that the Musashi (Msi) family of RNAbinding translational repressors are e...
Research Doctorate - Doctor of Philosophy (PhD)Spermatogenesis describes the complex process male ga...
Spermatogenesis is a complex developmental process whereby diploid spermatogenic stem cells become h...
Spermatogenesis is a complex developmental process whereby diploid spermatogenic stem cells become h...
The Musashi1 (Msi1) gene identified in mouse is a member of a subfamily of RNA binding proteins that...
AbstractMSY2 is implicated in regulating the stability and translation of maternal mRNAs during mous...
Evolutionarily conserved RNA-binding protein Musashi1 (Msi1) can regulate developmentally relevant g...
Controlled gene regulation during gamete development is vital for maintaining reproductive potential...
In the mammalian ovary, the dormant primordial follicles are the source of developing follicles and ...
A key goal of regenerative medicine is an understanding of the genetic factors that define the prope...
Spermatogenesis is a complex developmental process where-by diploid spermatogenic stem cells become ...
Characterizing the mechanisms underlying follicle development in the ovary is crucial to understandi...
Characterizing the mechanisms underlying follicle development in the ovary is crucial to understandi...
Characterizing the mechanisms underlying follicle development in the ovary is crucial to understandi...
Research Doctorate - Doctor of Philosophy (PhD)The production of healthy, euploid oocytes from a fin...
Recent studies have shown that the Musashi (Msi) family of RNAbinding translational repressors are e...
Research Doctorate - Doctor of Philosophy (PhD)Spermatogenesis describes the complex process male ga...
Spermatogenesis is a complex developmental process whereby diploid spermatogenic stem cells become h...
Spermatogenesis is a complex developmental process whereby diploid spermatogenic stem cells become h...
The Musashi1 (Msi1) gene identified in mouse is a member of a subfamily of RNA binding proteins that...
AbstractMSY2 is implicated in regulating the stability and translation of maternal mRNAs during mous...
Evolutionarily conserved RNA-binding protein Musashi1 (Msi1) can regulate developmentally relevant g...
Controlled gene regulation during gamete development is vital for maintaining reproductive potential...
In the mammalian ovary, the dormant primordial follicles are the source of developing follicles and ...
A key goal of regenerative medicine is an understanding of the genetic factors that define the prope...
Spermatogenesis is a complex developmental process where-by diploid spermatogenic stem cells become ...