Importin proteins were originally characterized for their central role in protein transport through the nuclear pores, the only intracellular entry to the nucleus. This vital function must be tightly regulated to control access by transcription factors and other nuclear proteins to genomic DNA, to achieve appropriate modulation of cellular behaviors affecting cell fate. Importin-mediated nucleocytoplasmic transport relies on their specific recognition of cargoes, with each importin binding to distinct and overlapping protein subsets. Knowledge of importin function has expanded substantially in regard to three key developmental systems: embryonic stem cells, muscle cells and the germ line. In the decade since the potential for regulated nucl...
Abstract: Access to nuclear genes in eukaryotes is provided by members of the importin (IMP) superfa...
Access to nuclear genes in eukaryotes is provided by members of the importin (IMP) superfamily of pr...
A recent paper in Nature Cell Biology reports an unexpected role for nuclear transport proteins in t...
Importin proteins were originally characterized for their central role in protein transport through ...
Importins are proteins from a group of karyopherins, which provide transport of proteins into the nu...
Nucleocytoplasmic transport mediated by importin proteins is central to many developmental processes...
© 2018 Dr. James Ronald HeaneyThe Drosophila testis maintains two stem cell populations at the apica...
AbstractNucleocytoplasmic transport mediated by importin proteins is central to many developmental p...
Importin α proteins function as adaptors to connect a cargo protein and importin ß1 in the classical...
AbstractSpermatogenesis is one example of a developmental process which requires tight control of ge...
Mammalian spermiogenesis is characterized by a unique chromatin-remodeling process in which histones...
Mammalian spermiogenesis is characterized by a unique chromatin-remodeling process in which histones...
AbstractThe importin (IMP) superfamily of nuclear transport proteins is essential to key development...
Spermatogenesis is driven by an ordered series of events, which rely on trafficking of specific prot...
Importin α family proteins are the cargo receptor component of the classical nuclear import machiner...
Abstract: Access to nuclear genes in eukaryotes is provided by members of the importin (IMP) superfa...
Access to nuclear genes in eukaryotes is provided by members of the importin (IMP) superfamily of pr...
A recent paper in Nature Cell Biology reports an unexpected role for nuclear transport proteins in t...
Importin proteins were originally characterized for their central role in protein transport through ...
Importins are proteins from a group of karyopherins, which provide transport of proteins into the nu...
Nucleocytoplasmic transport mediated by importin proteins is central to many developmental processes...
© 2018 Dr. James Ronald HeaneyThe Drosophila testis maintains two stem cell populations at the apica...
AbstractNucleocytoplasmic transport mediated by importin proteins is central to many developmental p...
Importin α proteins function as adaptors to connect a cargo protein and importin ß1 in the classical...
AbstractSpermatogenesis is one example of a developmental process which requires tight control of ge...
Mammalian spermiogenesis is characterized by a unique chromatin-remodeling process in which histones...
Mammalian spermiogenesis is characterized by a unique chromatin-remodeling process in which histones...
AbstractThe importin (IMP) superfamily of nuclear transport proteins is essential to key development...
Spermatogenesis is driven by an ordered series of events, which rely on trafficking of specific prot...
Importin α family proteins are the cargo receptor component of the classical nuclear import machiner...
Abstract: Access to nuclear genes in eukaryotes is provided by members of the importin (IMP) superfa...
Access to nuclear genes in eukaryotes is provided by members of the importin (IMP) superfamily of pr...
A recent paper in Nature Cell Biology reports an unexpected role for nuclear transport proteins in t...