Lo Yu-Chih, Lin Su-Chang, Shaw Jei-Fu, Liaw Yen-Chywan
Institute of Molecular Biology and Institute of Botany, Academia Sinica, Nankang, Taipei, Taiwan 115, ROC.
Biochemistry. 2005 Feb 15;44(6):1971-9. doi: 10.1021/bi048109x.
Escherichia coli thioesterase I/protease I/lysophospholipase L(1) (TAP) is a multifunctional lysophospholipase and acyl-CoA thioesterase with a SGNH-hydrolase fold. The relationship between TAP's structure and its versatile substrate specificity, however, is unclear. Here, we present the crystal structure of TAP in complex with octanoic acid (TAP-OCA; OCA, a free fatty acid with eight carbon atoms, C(8)). A structural comparison of native TAP with TAP-OCA reveals a remarkable conformational change in loop(75)(-)(80), called "switch loop movement", upon OCA binding to the substrate-binding crevice of TAP. OCA binding to the substrate-binding crevice results in a continuous hydrophobic surface, which triggers switch loop movement. The switch loop movement is acyl chain length dependent, with an effect of stabilizing the Michaelis complex (MC) of TAP during catalysis, and is essential for TAP's substrate preference. The finding of a sulfate ion binding site in the TAP structures, together with previous enzyme kinetic analyses, leads us to postulate that a putative CoA binding site is essential for efficient catalysis of thioesters in TAP. We also present the crystal structure of L109P-OCA (TAP's L109P mutant in complex with OCA), in which Leu109 mutated to Pro109 abolishes switch loop movement. This result strengthens our hypothesis that the switch loop movement is induced by hydrophobic interactions.
大肠杆菌硫酯酶I/蛋白酶I/溶血磷脂酶L(1)(TAP)是一种具有SGNH水解酶折叠结构的多功能溶血磷脂酶和酰基辅酶A硫酯酶。然而,TAP的结构与其多样的底物特异性之间的关系尚不清楚。在此,我们展示了与辛酸结合的TAP的晶体结构(TAP - OCA;OCA是一种含8个碳原子的游离脂肪酸,C(8))。天然TAP与TAP - OCA的结构比较显示,当OCA结合到TAP的底物结合裂隙时,环(75)(-)(80)发生了显著的构象变化,称为“开关环移动”。OCA与底物结合裂隙的结合导致形成一个连续的疏水表面,从而触发开关环移动。开关环移动依赖于酰基链长度,在催化过程中具有稳定TAP的米氏复合物(MC)的作用,并且对于TAP的底物偏好至关重要。在TAP结构中发现一个硫酸根离子结合位点,结合之前的酶动力学分析,使我们推测一个假定的辅酶A结合位点对于TAP中硫酯的高效催化至关重要。我们还展示了L109P - OCA的晶体结构(TAP的L109P突变体与OCA的复合物),其中亮氨酸109突变为脯氨酸109消除了开关环移动。这一结果强化了我们的假设,即开关环移动是由疏水相互作用诱导的。