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λ噬菌体阻遏蛋白的四级结构与功能:对基因工程改造蛋白的1H-NMR研究

Quaternary structure and function in phage lambda repressor: 1H-NMR studies of genetically altered proteins.

作者信息

Weiss M A, Karplus M, Sauer R T

机构信息

Francis Bitter National Magnet Laboratory, Massachusetts Institute of Technology, Cambridge 02139.

出版信息

J Biomol Struct Dyn. 1987 Dec;5(3):539-56. doi: 10.1080/07391102.1987.10506412.

Abstract

The quaternary structure and dynamics of phage lambda repressor are investigated in solution by 1H-NMR methods. lambda repressor contains two domains separable by proteolysis: an N-terminal domain that mediates sequence-specific DNA-A binding, and a C-terminal domain that contains strong dimer and higher-order contacts. The active species in operator recognition is a dimer. Although the crystal structure of an N-terminal fragment has been determined, the intact protein has not been crystallized, and there is little evidence concerning its structure. 1H-NMR data indicate that the N-terminal domain is only loosely tethered to the C-terminal domain, and that its tertiary structure is unperturbed by proteolysis of the "linker" polypeptide. It is further shown that in the intact repressor structure a quaternary interaction occurs between N-terminal domains. This domain-domain interaction is similar to the dimer contact observed in the crystal structure of the N-terminal fragment and involves the hydrophobic packing of symmetry-related helices (helix 5). In the intact structure this interaction is disrupted by the single amino-acid substitution, Ile84----Ser, which reduces operator affinity at least 100-fold. We conclude that quaternary interactions between N-terminal domains function to appropriately orient the DNA-binding surface with respect to successive major grooves of B-DNA.

摘要

通过¹H-NMR方法在溶液中研究了λ噬菌体阻遏物的四级结构和动力学。λ噬菌体阻遏物包含两个可通过蛋白酶解分离的结构域:介导序列特异性DNA-A结合的N端结构域,以及包含强二聚体和高阶相互作用的C端结构域。在操纵子识别中的活性物质是二聚体。尽管已确定了N端片段的晶体结构,但完整的蛋白质尚未结晶,并且关于其结构的证据很少。¹H-NMR数据表明,N端结构域仅松散地连接到C端结构域,并且其三级结构不受“连接子”多肽蛋白酶解的干扰。进一步表明,在完整的阻遏物结构中,N端结构域之间发生四级相互作用。这种结构域间相互作用类似于在N端片段晶体结构中观察到的二聚体接触,并且涉及对称相关螺旋(螺旋5)的疏水堆积。在完整结构中,这种相互作用被单个氨基酸取代Ile84→Ser破坏,这使操纵子亲和力降低了至少100倍。我们得出结论,N端结构域之间的四级相互作用起到相对于B-DNA的连续大沟适当地定向DNA结合表面的作用。

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