Derbyshire V, Kowalski J C, Dansereau J T, Hauer C R, Belfort M
Molecular Genetics Program, Wadsworth Center, New York State Department of Health and School of Public Health, State University of New York, Albany 12201-2002, USA.
J Mol Biol. 1997 Feb 7;265(5):494-506. doi: 10.1006/jmbi.1996.0754.
I-TevI, the T4 td intron-encoded endonuclease, catalyzes the first step in intron homing by making a double-strand break in the intronless allele within a sequence designated the homing site. The 28 kDa enzyme, which interacts with the homing site over a span of 37 bp, binds as a monomer, contacting two domains of the substrate. In this study, limited proteolysis experiments indicate that I-TevI consists of two domains that behave as discrete physical entities as judged by a number of functional and structural criteria. Overexpression clones for each domain were constructed and the proteins were purified. The carboxy-terminal domain has DNA-binding activity coincident with the primary binding region of the homing site and binds with the same affinity as the full-length enzyme. The isolated amino-terminal domain, contains the conserved GIY-YIG motif, consistent with its being the catalytic domain. Furthermore, site-directed mutagenesis of a conserved arginine residue within the extended motif rendered the full-length protein catalytically inactive, although DNA-binding was maintained. This is the first evidence that the GIY-YIG motif is important for catalytic activity. An enzyme with an N-terminal catalytic domain and a C-terminal DNA-binding domain connected by a flexible linker is in accord with the bipartite structure of the homing site.
I-TevI是一种由T4噬菌体td内含子编码的内切核酸酶,它通过在一个被称为归巢位点的序列内的无内含子等位基因上制造双链断裂,催化内含子归巢的第一步。这种28 kDa的酶在37 bp的跨度内与归巢位点相互作用,以单体形式结合,与底物的两个结构域接触。在本研究中,有限蛋白酶解实验表明,根据一些功能和结构标准判断,I-TevI由两个结构域组成,它们表现为离散的物理实体。构建了每个结构域的过表达克隆并纯化了蛋白质。羧基末端结构域具有与归巢位点的主要结合区域一致的DNA结合活性,并且与全长酶以相同的亲和力结合。分离出的氨基末端结构域包含保守的GIY-YIG基序,这与其作为催化结构域一致。此外,扩展基序内一个保守精氨酸残基的定点诱变使全长蛋白质失去催化活性,尽管仍保持DNA结合能力。这是GIY-YIG基序对催化活性很重要的首个证据。一种具有通过柔性接头连接的氨基末端催化结构域和羧基末端DNA结合结构域的酶,与归巢位点的二分结构相符。