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亚微摩尔钙对脑色氨酸羟化酶的构象影响:等摩尔锂的相反作用。

Conformational influences on brain tryptophan hydroxylase by submicromolar calcium: opposite effects of equimolar lithium.

作者信息

Knapp S, Mandell A J

出版信息

J Neural Transm. 1979;45(1):1-15. doi: 10.1007/BF01243877.

Abstract

Tryptophan hydroxylase from rat midbrain, EGTA-pretreated and dialyzed, manifested allosteric properties with respect to its substrate tryptophan, cofactor tetrahydrobiopterin, and the calcium ion. Kinetic studies suggest two preferred enzyme conformations in the presence of low concentrations of the cosubstrates: a higher affinity form manifesting hyperbolic substrate kinetics, induced by submicromolar (0.4--0.8 microM) calcium in vitro and cocaine in vivo, and a lower affinity form exaggerating cooperativity with respect to substrate, induced by submicromolar (0.4 to 0.8 microM) lithium in vitro and lithium in vivo. Lithium's effect on serotonin biosynthesis may be due to its antagonism of the positive effector influence of calcium on tryptophan hydroxylase, either as a negative effector or by blocking the calcium site.

摘要

经EGTA预处理和透析的大鼠中脑色氨酸羟化酶,对其底物色氨酸、辅因子四氢生物蝶呤和钙离子表现出变构特性。动力学研究表明,在低浓度共底物存在下有两种优选的酶构象:一种是高亲和力形式,表现为双曲线型底物动力学,由体外亚微摩尔浓度(0.4 - 0.8微摩尔)的钙和体内的可卡因诱导产生;另一种是低亲和力形式,对底物表现出更强的协同性,由体外亚微摩尔浓度(0.4至0.8微摩尔)的锂和体内的锂诱导产生。锂对血清素生物合成的影响可能是由于它作为负效应物或通过阻断钙位点来拮抗钙对色氨酸羟化酶的正效应物影响。

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