West Jay M, Tsuruta Hiro, Kantrowitz Evan R
Department of Chemistry, Boston College, Merkert Chemistry Center, Chestnut Hill, Massachusetts 02467, USA.
J Biol Chem. 2004 Jan 9;279(2):945-51. doi: 10.1074/jbc.M304018200. Epub 2003 Oct 26.
A new system has been developed capable of monitoring conformational changes of the 240s loop of aspartate transcarbamoylase, which are tightly correlated with the quaternary structural transition, with high sensitivity in solution. Pyrene, a fluorescent probe, was conjugated to residue 241 in the 240s loop of aspartate transcarbamoylase to monitor changes in conformation by fluorescence spectroscopy. Pyrene maleimide was conjugated to a cysteine residue on the 240s loop of a previously constructed double catalytic chain mutant version of the enzyme, C47A/A241C. The pyrene-labeled enzyme undergoes the normal T to R structural transition, as demonstrated by small-angle x-ray scattering. Like the wild-type enzyme, the pyrene-labeled enzyme exhibits cooperativity toward aspartate, and is activated by ATP and inhibited by CTP at subsaturating concentrations of aspartate. The binding of the bisubstrate analogue N-(phosphonoacetyl)-l-aspartate (PALA), or the aspartate analogue succinate, in the presence of saturating carbamoyl phosphate, to the pyrenelabeled enzyme caused a sigmoidal change in the fluorescence emission. Saturation with ATP and CTP (in the presence of either subsaturating amounts of PALA or succinate and carbamoyl phosphate) caused a hyperbolic increase and decrease, respectively, in the fluorescence emission. The half-saturation values from the fluorescence saturation curves and kinetic saturation curves were, within error, identical. Fluorescence and small-angle x-ray scattering stopped-flow experiments, using aspartate and carbamoyl phosphate, confirm that the change in excimer fluorescence and the quaternary structure change correlate. These results in conjunction with previous studies suggest that the allosteric transition involves both global and local conformational changes and that the heterotropic effect of the nucleotides may be exerted through local conformational changes in the active site by directly influencing the conformation of the 240s loop.
已开发出一种新系统,该系统能够在溶液中以高灵敏度监测天冬氨酸转氨甲酰酶240s环的构象变化,这些变化与四级结构转变紧密相关。荧光探针芘与天冬氨酸转氨甲酰酶240s环中的241位残基偶联,以通过荧光光谱法监测构象变化。芘马来酰亚胺与先前构建的该酶的双催化链突变体版本C47A/A241C的240s环上的半胱氨酸残基偶联。如小角X射线散射所示,芘标记的酶经历正常的T到R结构转变。与野生型酶一样,芘标记的酶对天冬氨酸表现出协同性,并且在天冬氨酸亚饱和浓度下被ATP激活并被CTP抑制。在存在饱和氨甲酰磷酸的情况下,双底物类似物N-(膦酰基乙酰基)-L-天冬氨酸(PALA)或天冬氨酸类似物琥珀酸与芘标记的酶的结合导致荧光发射呈S形变化。用ATP和CTP饱和(在存在亚饱和量的PALA或琥珀酸和氨甲酰磷酸的情况下)分别导致荧光发射呈双曲线增加和减少。荧光饱和曲线和动力学饱和曲线的半饱和值在误差范围内是相同的。使用天冬氨酸和氨甲酰磷酸的荧光和小角X射线散射停流实验证实,准分子荧光的变化与四级结构变化相关。这些结果与先前的研究表明,变构转变涉及全局和局部构象变化,并且核苷酸的异源效应可能通过直接影响240s环的构象,通过活性位点的局部构象变化来发挥作用。