Transport across the nuclear envelope: Enigmas and explanations
- 1 May 1991
- Vol. 13 (5) , 213-218
- https://doi.org/10.1002/bies.950130503
Abstract
The transport of molecules across the nuclear envelope plays a central role in the metabolism of the cell. Significant advances hi three major areas highlight the limits of our current knowledge and point to the prospect of exciting future developments. Firstly, findings that ions and small proteins do not diffuse freely into the nucleus call into question the current views of nuclear envelope permeability. Secondly, indications that nuclear protein import can be regulated in conjunction with the cell cycle and development have been confirmed by the clear demonstration of regulated nuclear entry of specific transcription factors and morphogens. Thirdly, identification and characterisation of candidate receptor proteins indicates that the recognition of the nuclear targeting sequence occurs in the cytoplasm, suggesting that a different recognition event occurs at the nuclear pore.Keywords
This publication has 42 references indexed in Scilit:
- Nuclear protein import in permeabilized mammalian cells requires soluble cytoplasmic factors.The Journal of cell biology, 1990
- Primary sequence and heterologous expression of nuclear pore glycoprotein p62.The Journal of cell biology, 1990
- An N-ethylmaleimide-sensitive cytosolic factor necessary for nuclear protein import: requirement in signal-mediated binding to the nuclear pore.The Journal of cell biology, 1990
- Yeast proteins that recognize nuclear localization sequences.The Journal of cell biology, 1989
- The fission yeast cdc2/cdc13/suc1 protein kinase: Regulation of catalytic activity and nuclear localizationCell, 1989
- Nuclear transportCurrent Opinion in Cell Biology, 1989
- Regulation of gene expression by nuclear hormone receptorsCurrent Opinion in Cell Biology, 1989
- Identification of specific binding proteins for a nuclear location sequenceNature, 1989
- The accumulation of proteins in the nucleusTrends in Biochemical Sciences, 1985
- Cytoplasmic exclusion as a basis for asymmetric nucleocytoplasmic solute distributionsNature, 1976