Johnen G, Kaufman S
Laboratory of Neurochemistry, National Institute of Mental Health, Bethesda, MD 20892, USA.
Proc Natl Acad Sci U S A. 1997 Dec 9;94(25):13469-74. doi: 10.1073/pnas.94.25.13469.
The relationship between the enzymatic and the transcriptional activity of the bifunctional protein pterin-4a-carbinolamine dehydratase/dimerization cofactor for hepatocyte nuclear factor 1 (DCoH) has been elucidated by site-directed mutagenesis. DCoH dimers harbor a binding site for hepatocyte nuclear factor 1 (HNF1), two active centers that bind pterins, and a saddle-shaped surface that resembles nucleic acid binding domains. Two domains of the protein have been selectively targeted to determine if a change in one activity affects the other. No strong correlation has been found, supporting the idea that carbinolamine dehydratase activity is not required for HNF1 binding in vitro or transcriptional coactivation in vivo. Double mutations in the active center, however, influence the in vivo transcriptional activity but not HNF1 binding. This finding suggests that some active center residues also are used during transcription, possibly for binding of another (macro)molecule. Several mutations in the saddle led to a surprising increase in transcription, therefore linking this domain to transcriptional regulation as well. The transcriptional function of DCoH therefore is composed of two parts, HNF1 binding and another contributing effect that involves the active site and, indirectly, the saddle.
通过定点诱变,已阐明了双功能蛋白蝶呤 - 4a - 甲醇胺脱水酶/肝细胞核因子1二聚化辅助因子(DCoH)的酶活性与转录活性之间的关系。DCoH二聚体具有肝细胞核因子1(HNF1)的结合位点、两个结合蝶呤的活性中心以及一个类似于核酸结合域的鞍形表面。该蛋白的两个结构域已被选择性地靶向,以确定一种活性的变化是否会影响另一种活性。未发现强烈的相关性,这支持了在体外HNF1结合或体内转录共激活不需要甲醇胺脱水酶活性的观点。然而,活性中心的双突变会影响体内转录活性,但不影响HNF1结合。这一发现表明,一些活性中心残基在转录过程中也会被利用,可能用于结合另一种(大)分子。鞍形结构中的几个突变导致转录意外增加,因此也将该结构域与转录调控联系起来。因此,DCoH的转录功能由两部分组成,即HNF1结合以及另一种涉及活性位点并间接涉及鞍形结构的促进作用。