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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Substrate Binding Primes Human Tryptophan 2,3-Dioxygenase for Ligand Binding
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Substrate Binding Primes Human Tryptophan 2,3-Dioxygenase for Ligand Binding

机译:底物结合primes priteChan 2,3-二恶英酶用于配体结合

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摘要

The human heme enzyme tryptophan 2,3-dioxygenase (hTDO) catalyzes the insertion of dioxygen into its cognate substrate, L-tryptophan (L-Trp). Its active site structure is highly dynamic, and the mechanism of enzyme substrate ligand complex formation and the ensuing enzymatic reaction is not yet understood. Here we have studied complex formation in hTDO by using time-resolved optical and infrared spectroscopy with carbon monoxide (CO) as a ligand. We have observed that both substrate-free and substrate-bound hTDO coexist in two discrete conformations with greatly different ligand binding rates. In the fast rebinding hTDO conformation, there is facile ligand access to the heme iron, but it is greatly hindered in the slowly rebinding conformation. Spectroscopic evidence implicates active site solvation as playing a crucial role for the observed kinetic differences. Substrate binding shifts the conformational equilibrium markedly toward the fast species and thus primes the active site for subsequent ligand binding, ensuring that formation of the ternary complex occurs predominantly by first binding L-Trp and then the ligand. Consequently, the efficiency of catalysis is enhanced because 02 binding prior to substrate binding, resulting in nonproductive oxidation of the heme iron, is greatly suppressed.
机译:人血红素酶色氨酸2,3-二氧合酶(HTDO)催化DiOxygen进入其同源底物,L-色氨酸(L-TRP)。其活性部位结构具有高度动态,尚未理解酶底物配体复合物和随后的酶反应的机制。在这里,我们通过使用与一氧化碳(CO)作为配体的一氧化碳(CO)来研究HTDO中的复杂形成。我们已经观察到,无两种离散构象的无基质和基质的HTDO共存,具有极大的配体结合速率。在快速重新绑定HTDO构象中,有血红素铁的容易配体进入,但在缓慢的折衷构象中大大阻碍了。光谱证据意味着活跃的部位溶解,因为对观察到的动力学差异起着至关重要的作用。基板结合使构象平衡显着地朝向快速物种移位,因此将活性位点引发以进行后续配体结合,确保通过第一结合L-TRP和配体主要发生三元复合物的形成。因此,增强了催化效率,因为在衬底结合之前02结合,导致血红素铁的非生产氧化,得到了极大的抑制。

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