Department of Life Sciences, Pohang University of Science and Technology, Pohang, 790-894, Korea.
Mol Cells. 2010 Mar;29(3):291-6. doi: 10.1007/s10059-010-0034-y. Epub 2010 Jan 14.
During brassinosteroid (BR) signaling in Arabidopsis, BSU1 (bri1 SUPPRESSOR1) phosphatase and BIN2 (BRASSINOSTEROID INSENSITIVE2) kinase regulate the signal intensity by determining the phosphorylation status of the transcription factors BZR1 (BRASSINAZOLE RESISTANT1) and BES1 (bri1 EMS SUPPRESSOR1). Here, we report hat BIN2 and BSU1 are nucleocytoplasmic regulators that modulate the subcellular localization of BES1, with differential activities between the nucleus and the cytosol. In our experiments, the nuclear BIN2 induced phosphorylation and nuclear export of BES1 more efficiently than cytosolic BIN2.The cytoplasmic BSU1 mediated the dephosphorylation and nuclear translocation of BES1 more efficiently than the nuclear one. BSU1 compromised the dwarf phenotype of bri1-5, a weak allele of BRI1 (BR-INSENSITIVE 1) receptor kinase, more effectively when localized in the cytosol than in the nucleus in transgenic plants. In conclusion, the predominance of cytosolic BSU1 and nuclear BIN2 might be required for the efficient subcellular localization of BES1 in BR signaling.
在拟南芥油菜素内酯(BR)信号转导过程中,BSU1(bri1 SUPPRESSOR1)磷酸酶和 BIN2(BRASSINOSTEROID INSENSITIVE2)激酶通过确定转录因子 BZR1(BRASSINAZOLE RESISTANT1)和 BES1(bri1 EMS SUPPRESSOR1)的磷酸化状态来调节信号强度。在这里,我们报告 BIN2 和 BSU1 是核质调节剂,可调节 BES1 的亚细胞定位,其在核和细胞质中的活性存在差异。在我们的实验中,核 BIN2 比胞质 BIN2 更有效地诱导 BES1 的磷酸化和核输出。细胞质 BSU1 比核 BSU1 更有效地介导 BES1 的去磷酸化和核转位。BSU1 在转基因植物中,当定位于细胞质中而非细胞核中时,可更有效地削弱 bri1-5(BR-INSENSITIVE 1 受体激酶的弱等位基因)的矮化表型。总之,在 BR 信号转导中,BSU1 主要定位于细胞质和 BIN2 主要定位于核内,这可能是 BES1 有效亚细胞定位所必需的。