In order to maintain their unlimited capacity to divide, stem cells require controlled temporal and spatial protein expression. The Musashi family of RNA-binding proteins have been shown to exhibit this necessary translational control through both repression and activation in order to regulate multiple stem cell populations. This chapter looks in depth at the initial discovery and characterisation of Musashi in the model organism Drosophila , and its subsequent emergence as a master regulator in a number of stem cell populations. Furthermore the unique roles for mammalian Musashi-1 and Musashi-2 in different stem cell types are correlated with the perceived diagnostic power of Musashi expression in specific stem cell derived oncologies. In ...
Spermatogenesis is a complex developmental process whereby diploid spermatogenic stem cells become h...
RNA-binding proteins of the Musashi (Msi) family are expressed in stem cell compartments and in aggr...
Spermatogenesis is a complex developmental process whereby diploid spermatogenic stem cells become h...
In order to maintain their unlimited capacity to divide, stem cells require controlled temporal and ...
The evolutionarily conserved RNA-binding protein, Musashi, regulates neural stem cell self-renewal. ...
The Musashi family of RNA binding proteins act to promote stem cell self-renewal and oppose cell dif...
The Musashi family is an evolutionarily conserved group of RNA-binding proteins. In mammal, two memb...
A key goal of regenerative medicine is an understanding of the genetic factors that define the prope...
The Musashi (Msi) family of RNA-binding proteins is post-transcriptional regulators of gene expressi...
The therapeutic potential of Musashi (MSI) RNA-binding proteins, important stemness-associated gene ...
Recent studies have shown that the Musashi (Msi) family of RNAbinding translational repressors are e...
International audienceGlioblastoma (GBM) is one of the most aggressive tumor types with no effective...
We used a retroviral integration screen to search for novel genes that regulate HSC function. One of...
Controlled gene regulation during gamete development is vital for maintaining reproductive potential...
In ovarian cancer, therapy resistance mechanisms complicate cancer cell eradication. Targeting Musas...
Spermatogenesis is a complex developmental process whereby diploid spermatogenic stem cells become h...
RNA-binding proteins of the Musashi (Msi) family are expressed in stem cell compartments and in aggr...
Spermatogenesis is a complex developmental process whereby diploid spermatogenic stem cells become h...
In order to maintain their unlimited capacity to divide, stem cells require controlled temporal and ...
The evolutionarily conserved RNA-binding protein, Musashi, regulates neural stem cell self-renewal. ...
The Musashi family of RNA binding proteins act to promote stem cell self-renewal and oppose cell dif...
The Musashi family is an evolutionarily conserved group of RNA-binding proteins. In mammal, two memb...
A key goal of regenerative medicine is an understanding of the genetic factors that define the prope...
The Musashi (Msi) family of RNA-binding proteins is post-transcriptional regulators of gene expressi...
The therapeutic potential of Musashi (MSI) RNA-binding proteins, important stemness-associated gene ...
Recent studies have shown that the Musashi (Msi) family of RNAbinding translational repressors are e...
International audienceGlioblastoma (GBM) is one of the most aggressive tumor types with no effective...
We used a retroviral integration screen to search for novel genes that regulate HSC function. One of...
Controlled gene regulation during gamete development is vital for maintaining reproductive potential...
In ovarian cancer, therapy resistance mechanisms complicate cancer cell eradication. Targeting Musas...
Spermatogenesis is a complex developmental process whereby diploid spermatogenic stem cells become h...
RNA-binding proteins of the Musashi (Msi) family are expressed in stem cell compartments and in aggr...
Spermatogenesis is a complex developmental process whereby diploid spermatogenic stem cells become h...