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色氨酸合成酶的构象变化与亚基通讯:底物及底物类似物的影响

Conformational changes and subunit communication in tryptophan synthase: effect of substrates and substrate analogs.

作者信息

Strambini G B, Cioni P, Peracchi A, Mozzarelli A

机构信息

CNR-Istituto di Biofisica, Pisa, Italy.

出版信息

Biochemistry. 1992 Aug 25;31(33):7535-42. doi: 10.1021/bi00148a014.

Abstract

The transmission of regulatory signals between the alpha- and beta-subunits of the tryptophan synthase alpha 2 beta 2 complex from Salmonella typhimurium has been investigated by monitoring the luminescence properties of the enzyme in the presence and in the absence of the alpha-subunit ligand DL-alpha-glycerol 3-phosphate, the alpha- and beta-subunit substrate indole, and the beta-subunit substrate analog L-histidine. The beta-subunit contains as intrinsic probes Trp-177 and pyridoxal 5'-phosphate, whereas the alpha-subunit has been mutagenized by replacing Ala-129 with a Trp residue. In contrast to the inertness of L-histidine, DL-alpha-glycerol 3-phosphate was found (i) to alter the phosphorescence spectrum of Trp-129, (ii) to shift the fluorescence thermal quenching profile of both Trp-177 and coenzyme to higher temperature, (iii) to slow down the triplet decay kinetics of Trp-177 in fluid solution, and (iv) to affect the equilibrium between different conformations of the enzyme. These findings provide direct evidence that DL-alpha-glycerol 3-phosphate binding affects the structure of the alpha-subunit and, in the presence of coenzyme, induces a conformational change in the beta-subunit that leads to a considerably more rigid structure. As opposed to DL-alpha-glycerol 3-phosphate, the shortening of the phosphorescence lifetime upon indole binding suggests that this substrate increases structural fluctuations in the beta-subunit. Implications for the mechanism of the allosteric regulation between alpha- and beta-subunits are discussed.

摘要

通过监测鼠伤寒沙门氏菌色氨酸合酶α2β2复合物的α亚基和β亚基在存在和不存在α亚基配体DL-α-甘油3-磷酸、α亚基和β亚基底物吲哚以及β亚基底物类似物L-组氨酸的情况下的发光特性,对该复合物中α亚基和β亚基之间调节信号的传递进行了研究。β亚基含有内在探针色氨酸-177和磷酸吡哆醛,而α亚基已通过将丙氨酸-129替换为色氨酸残基进行了诱变。与L-组氨酸的惰性相反,发现DL-α-甘油3-磷酸:(i)改变色氨酸-129的磷光光谱;(ii)将色氨酸-177和辅酶的荧光热猝灭曲线向更高温度移动;(iii)减慢色氨酸-177在流体溶液中的三重态衰减动力学;(iv)影响酶不同构象之间的平衡。这些发现提供了直接证据,表明DL-α-甘油3-磷酸的结合影响α亚基的结构,并且在辅酶存在下,诱导β亚基的构象变化,导致结构显著更刚性。与DL-α-甘油3-磷酸相反,吲哚结合后磷光寿命的缩短表明该底物增加了β亚基中的结构波动。讨论了对α亚基和β亚基之间变构调节机制的影响。

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