| Literature DB >> 28446921 |
Yu Yang1, Wei Wang2,3, Zhaoqing Chu2,3, Jian-Kang Zhu1,4, Huiming Zhang1.
Abstract
The nuclear pore complex (NPC) is a large protein complex that controls the exchange of components between the nucleus and the cytoplasm. In plants, the NPC family components play critical roles not only in essential growth and developmental processes, but also in plant responses to various environmental stress conditions. The involvement of NPC components in plant stress responses is mainly attributed to different mechanisms including control of mRNA/protein nucleo-cytoplasmic trafficking and transcriptional gene regulation. This mini review summarizes current knowledge of the NPC-mediated plant stress responses and provides an overview of the underlying molecular mechanisms.Entities:
Keywords: abiotic stress; biotic stress; nuclear pore complex; nucleo-cytoplasmic transport; nucleoporin
Year: 2017 PMID: 28446921 PMCID: PMC5388774 DOI: 10.3389/fpls.2017.00574
Source DB: PubMed Journal: Front Plant Sci ISSN: 1664-462X Impact factor: 5.753
Nucleoporins and the associated transport factors involved in Arabidopsis stress responses.
| Protein | Homologs | Stress | Phenotype | Reference |
|---|---|---|---|---|
| NUP160 (SAR1) | Human NUP160 | Cold | ||
| HOS1 | Vertebrate Elys | Cold | Overexpression of HOS1 confers increased sensitivity to freezing stress | |
| LOS4 | Yeast DBP5 | Cold | ||
| SAD2 | Vertebrate Importin β | ABA, UV-B | ||
| KPNB1 | Human Importin β1 | ABA, drought | ||
| MOS3 | Human NUP96 | Biotic stress | ||
| MOS6 | Yeast Importin α3 | Biotic stress | ||
| MOS7 | Human NUP88 | Biotic stress | ||
| CPR5 | None (a novel transmembrane nucleoporin) | Biotic stress | Loss of function in CPR5 results in resistance against pathogens; while overexpression comprised the resistance | |
| THP1 (EER5) | Yeast THP1 | Ethylene signaling | The mutant showed enhanced ethylene response | |
| HPR1 | Yeast HPR1 | Biotic stress and ethylene signaling | Mutation of hpr1 suppress the EDR1 mediated disease resistance and enhance ethylene induced senescence |