Endoh-Yamagami Setsu, Hirakawa Kiyoshi, Morioka Daisuke, Fukuda Ryouichi, Ohta Akinori
Department of Biotechnology, The University of Tokyo, Yayoi 1-1-1, Bunkyo-ku, Tokyo, 113-8657, Japan.
Eukaryot Cell. 2007 Apr;6(4):734-43. doi: 10.1128/EC.00412-06. Epub 2007 Feb 23.
The expression of the ALK1 gene, which encodes cytochrome P450, catalyzing the first step of alkane oxidation in the alkane-assimilating yeast Yarrowia lipolytica, is highly regulated and can be induced by alkanes. Previously, we identified a cis-acting element (alkane-responsive element 1 [ARE1]) in the ALK1 promoter. We showed that a basic helix-loop-helix (bHLH) protein, Yas1p, binds to ARE1 in vivo and mediates alkane-dependent transcription induction. Yas1p, however, does not bind to ARE1 by itself in vitro, suggesting that Yas1p requires another bHLH protein partner for its DNA binding, as many bHLH transcription factors function by forming heterodimers. To identify such a binding partner of Yas1p, here we screened open reading frames encoding proteins with the bHLH motif from the Y. lipolytica genome database and identified the YAS2 gene. The deletion of the YAS2 gene abolished the alkane-responsive induction of ALK1 transcription and the growth of the yeast on alkanes. We revealed that Yas2p has transactivation activity. Furthermore, Yas1p and Yas2p formed a protein complex that was required for the binding of these proteins to ARE1. These findings allow us to postulate a model in which bHLH transcription factors Yas1p and Yas2p form a heterocomplex and mediate the transcription induction in response to alkanes.
ALK1基因编码催化解脂耶氏酵母中烷烃同化第一步——烷烃氧化的细胞色素P450,其表达受到高度调控,并且可被烷烃诱导。此前,我们在ALK1启动子中鉴定出一个顺式作用元件(烷烃响应元件1 [ARE1])。我们发现一种碱性螺旋-环-螺旋(bHLH)蛋白Yas1p在体内与ARE1结合,并介导烷烃依赖性转录诱导。然而,Yas1p在体外自身并不与ARE1结合,这表明Yas1p需要另一个bHLH蛋白伴侣来进行DNA结合,因为许多bHLH转录因子通过形成异源二聚体发挥作用。为了鉴定Yas1p的这种结合伴侣,我们从解脂耶氏酵母基因组数据库中筛选了编码带有bHLH基序蛋白的开放阅读框,并鉴定出YAS2基因。YAS2基因的缺失消除了ALK1转录的烷烃响应诱导以及酵母在烷烃上的生长。我们发现Yas2p具有反式激活活性。此外,Yas1p和Yas2p形成了一种蛋白复合物,该复合物是这些蛋白与ARE1结合所必需的。这些发现使我们能够提出一个模型,即bHLH转录因子Yas1p和Yas2p形成一个异源复合物,并介导对烷烃的转录诱导。