Jiao Rubin, Lobanova Liubov, Waldner Amanda, Fu Anthony, Xiao Linda, Harkness Troy A, Arnason Terra G
Department of Anatomy and Cell Biology, University of Saskatchewan, Saskatoon, SK, Canada S7N 5E5.
Department of Anatomy and Cell Biology, University of Saskatchewan, Saskatoon, SK, Canada S7N 5E5. ; Department of Medicine, University of Saskatchewan, Saskatoon, SK, Canada S7N 5E5.
Microb Cell. 2016 Nov 4;3(11):540-553. doi: 10.15698/mic2016.11.538.
The SNF1 kinase in is an excellent model to study the regulation and function of the AMP-dependent protein kinase (AMPK) family of serine-threonine protein kinases. Yeast discoveries regarding the regulation of this non-hormonal sensor of metabolic/environmental stress are conserved in higher eukaryotes, including poly-ubiquitination of the α-subunit of yeast (Snf1) and human (AMPKα) that ultimately effects subunit stability and enzyme activity. The ubiquitin-cascade enzymes responsible for targeting Snf1 remain unknown, leading us to screen for those that impact SNF1 kinase function. We identified the E2, Ubc1, as a regulator of SNF1 kinase function. The decreased Snf1 abundance found upon deletion of Ubc1 is not due to increased degradation, but instead is partly due to impaired SNF1 gene expression, arising from diminished abundance of the Forkhead 1/2 proteins, previously shown to contribute to transcription. Ultimately, we report that the Fkh1/2 cognate transcription factor, Hcm1, fails to enter the nucleus in the absence of Ubc1. This implies that Ubc1 acts indirectly through transcriptional effects to modulate SNF1 kinase activity.
酵母中的SNF1激酶是研究丝氨酸 - 苏氨酸蛋白激酶AMP依赖蛋白激酶(AMPK)家族调节和功能的优秀模型。酵母中关于这种代谢/环境应激非激素传感器调节的发现,在包括酵母(Snf1)和人类(AMPKα)α亚基的多聚泛素化在内的高等真核生物中是保守的,这最终影响亚基稳定性和酶活性。负责靶向Snf1的泛素级联酶仍然未知,这促使我们筛选那些影响SNF1激酶功能的酶。我们鉴定出E2,Ubc1,作为SNF1激酶功能的调节剂。缺失Ubc1后发现Snf1丰度降低并非由于降解增加,而是部分归因于SNF1基因表达受损,这是由于Forkhead 1/2蛋白丰度降低导致的,先前已证明其有助于转录。最终,我们报告说,在没有Ubc1的情况下,Fkh1/2同源转录因子Hcm1无法进入细胞核。这意味着Ubc1通过转录效应间接作用来调节SNF1激酶活性。