Robinson K A, Koepke J I, Kharodawala M, Lopes J M
Department of Biological Sciences, Wayne State University, 5047 Gullen Mall, Detroit, MI 48202, USA.
Nucleic Acids Res. 2000 Nov 15;28(22):4460-6. doi: 10.1093/nar/28.22.4460.
The Ino4 protein belongs to the basic helix-loop-helix (bHLH) family of proteins. It is known to form a dimer with Ino2p, which regulates phospholipid biosynthetic genes. Mammalian bHLH proteins have been shown to form multiple dimer combinations. However, this flexibility in dimerization had not been documented for yeast bHLH proteins. Using the yeast two-hybrid assay and a biochemical assay we show that Ino4p dimerizes with the Pho4p, Rtg1p, Rtg3p and Sgc1p bHLH proteins. Screening a yeast cDNA library identified three additional proteins that interact with Ino4p: Bck2p, YLR422W and YNR064C. The interaction with Bck2p prompted us to examine if any of the Bck2p-associated functions affect expression of phospholipid biosynthetic genes. We found that hyperosmotic growth conditions altered the growth phase regulation of a phospholipid biosynthetic gene, CHO1. There are two recent reports of initial whole genome yeast two-hybrid interactions. Interestingly, one of these reports identified five proteins that interact with Ino4p: Ino2p, Hcs1p, Apl2p, YMR317W and YNL279W. Ino2p is the only protein in common with the data presented here. Our finding that Ino4p interacts with five bHLH proteins suggests that Ino4p is likely to be a central player in the coordination of multiple biological processes.
Ino4蛋白属于碱性螺旋-环-螺旋(bHLH)蛋白家族。已知它能与Ino2p形成二聚体,后者可调控磷脂生物合成基因。哺乳动物的bHLH蛋白已被证明能形成多种二聚体组合。然而,酵母bHLH蛋白的这种二聚化灵活性此前尚未见报道。通过酵母双杂交试验和生化试验,我们发现Ino4p能与Pho4p、Rtg1p、Rtg3p和Sgc1p的bHLH蛋白形成二聚体。筛选酵母cDNA文库鉴定出另外三种与Ino4p相互作用的蛋白:Bck2p、YLR422W和YNR064C。与Bck2p的相互作用促使我们研究是否有任何与Bck2p相关的功能会影响磷脂生物合成基因的表达。我们发现高渗生长条件改变了磷脂生物合成基因CHO1的生长阶段调控。最近有两篇关于酵母全基因组双杂交初始相互作用的报道。有趣的是,其中一篇报道鉴定出五种与Ino4p相互作用的蛋白:Ino2p、Hcs1p、Apl2p、YMR317W和YNL279W。Ino2p是与本文所呈现数据唯一相同的蛋白。我们发现Ino4p与五种bHLH蛋白相互作用,这表明Ino4p可能是协调多个生物学过程的核心参与者。