Zako Tamotsu, Ayabe Keiichi, Aburatani Takahide, Kamiya Noriho, Kitayama Atsushi, Ueda Hiroshi, Nagamune Teruyuki
Department of Chemistry and Biotechnology, School of Engineering, University of Tokyo, 7-3-1 Hongo, Bunkyo, Tokyo 113-8656, Japan.
Biochim Biophys Acta. 2003 Jul 30;1649(2):183-9. doi: 10.1016/s1570-9639(03)00179-1.
Firefly luciferase catalyzes highly efficient emission of light from the substrates luciferin, Mg-ATP, and oxygen. A number of amino acid residues are identified to be important for the luminescent activity, and almost all the key residues are thought to be located in the N-terminal domain (1-437), except one in the C-terminal domain, Lys529, which is thought to be critical for efficient substrate orientation. Here we show that the purified N-terminal domain still binds to the substrates luciferin and ATP with reduced affinity, and retains luminescent activity of up to 0.03% of the wild-type enzyme (WT), indicating that all the essential residues for the activity are located in the N-terminal domain. Also found is low luminescence enhancement by coenzyme A (CoA), which implies a lower product inhibition than in the WT enzyme. These findings have interesting implications for the light emission reaction mechanism of the enzyme, such as reaction intermediates, product inhibition, and the role of the C-terminal domain.
萤火虫荧光素酶催化底物荧光素、镁离子 - 三磷酸腺苷(Mg - ATP)和氧气高效发光。已确定多个氨基酸残基对发光活性很重要,并且几乎所有关键残基都被认为位于N端结构域(1 - 437),除了C端结构域中的一个残基Lys529,它被认为对底物的有效定向至关重要。在此我们表明,纯化的N端结构域仍能以降低的亲和力与底物荧光素和ATP结合,并保留高达野生型酶(WT)0.03%的发光活性,这表明该活性的所有必需残基都位于N端结构域。还发现辅酶A(CoA)对发光的增强作用较低,这意味着与野生型酶相比,产物抑制作用更低。这些发现对该酶的发光反应机制具有有趣的启示,例如反应中间体、产物抑制以及C端结构域的作用。