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肽与蛋白质的相互作用显著改变了天冬氨酸转氨甲酰酶催化亚基的功能特性。

Peptide-protein interaction markedly alters the functional properties of the catalytic subunit of aspartate transcarbamoylase.

作者信息

Zhou B B, Schachman H K

机构信息

Department of Molecular and Cell Biology, University of California, Berkeley 94720.

出版信息

Protein Sci. 1993 Jan;2(1):103-12. doi: 10.1002/pro.5560020111.

Abstract

Interaction of a 70-amino acid zinc-binding polypeptide from the regulatory chain of aspartate transcarbamoylase (ATCase) with the catalytic (C) subunit leads to dramatic changes in enzyme activity and affinity for ligand binding at the active sites. The complex between the polypeptide (zinc domain) and wild-type C trimer exhibits hyperbolic kinetics in contrast to the sigmoidal kinetics observed with the intact holoenzyme. Moreover, the Scatchard plot for binding N-(phosphonacetyl)-L-aspartate (PALA) to the complex is linear with a Kd corresponding to that evaluated for the holoenzyme converted to the relaxed (R) state. Additional evidence that the binding of the zinc domain to the C trimer converts it to the R state was attained with a mutant form of ATCase in which Lys 164 in the catalytic chain is replaced by Glu. As shown previously (Newell, J.O. & Schachman, H.K., 1990, Biophys. Chem. 37, 183-196), this mutant holoenzyme, which exists in the R conformation even in the absence of active site ligands, has a 50-fold greater affinity for PALA than the free C subunit. Adding the zinc domain to the C trimer containing the Lys 164-->Glu substitution leads to a 50-fold enhancement in the affinity for the bisubstrate analog yielding a value of Kd equal to that for the holoenzyme. A different mutant ATCase containing the Gln 231 to Ile replacement was shown (Peterson, C.B., Burman, D.L., & Schachman, H.K., 1992, Biochemistry 31, 8508-8515) to be much less active as a holoenzyme than as the free C trimer. For this mutant holoenzyme, the addition of substrates does not cause its conversion to the R state. However, the addition of the zinc domain to the Gln 231-->Ile C trimer leads to a marked increase in enzyme activity, and PALA binding data indicate that the complex resembles the R state of the holoenzyme. This interaction leading to a more active conformation serves as a model of intergenic complementation in which peptide binding to a protein causes a conformational correction at a site remote from the interacting surfaces resulting in activation of the protein. This linkage was also demonstrated by difference spectroscopy using a chromophore covalently bound at the active site, which served as a spectral probe for a local conformational change. The binding of ligands at the active sites was shown also to lead to a strengthening of the interaction between the zinc domain and the C trimer.

摘要

来自天冬氨酸转氨甲酰酶(ATCase)调节链的一种含70个氨基酸的锌结合多肽与催化(C)亚基的相互作用,会导致酶活性以及活性位点对配体结合亲和力的显著变化。与完整全酶所观察到的S形动力学相反,该多肽(锌结构域)与野生型C三聚体之间的复合物呈现双曲线动力学。此外,N-(膦酰乙酰基)-L-天冬氨酸(PALA)与该复合物结合的Scatchard图呈线性,其解离常数(Kd)与转化为松弛(R)状态的全酶所评估的值相对应。通过一种ATCase突变体形式获得了额外证据,即锌结构域与C三聚体的结合将其转化为R状态,该突变体中催化链上的赖氨酸164被谷氨酸取代。如先前所示(纽厄尔,J.O.和沙克曼,H.K.,1990年,《生物物理化学》37卷,183 - 196页),这种即使在没有活性位点配体时也以R构象存在的突变全酶,对PALA的亲和力比游离C亚基高50倍。将锌结构域添加到含有赖氨酸164→谷氨酸取代的C三聚体中,会使对双底物类似物的亲和力提高50倍,产生的Kd值与全酶的Kd值相等。另一种含有谷氨酰胺231被异亮氨酸取代的突变ATCase(彼得森,C.B.、伯曼,D.L.和沙克曼,H.K.,1992年,《生物化学》31卷,8508 - 8515页)显示,作为全酶时的活性比作为游离C三聚体时低得多。对于这种突变全酶,添加底物不会使其转化为R状态。然而,将锌结构域添加到谷氨酰胺231→异亮氨酸C三聚体中会导致酶活性显著增加,并且PALA结合数据表明该复合物类似于全酶的R状态。这种导致更具活性构象的相互作用,作为基因间互补的一个模型,其中肽与蛋白质的结合会在远离相互作用表面的位点引起构象校正,从而导致蛋白质激活。使用共价结合在活性位点的发色团通过差示光谱法也证明了这种联系,该发色团用作局部构象变化的光谱探针。活性位点配体的结合也显示会导致锌结构域与C三聚体之间相互作用的增强。

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