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十二聚体型II脱氢奎尼酸酶的折叠与组装。

The folding and assembly of the dodecameric type II dehydroquinases.

作者信息

Price N C, Boam D J, Kelly S M, Duncan D, Krell T, Gourley D G, Coggins J R, Virden R, Hawkins A R

机构信息

Department of Biological Sciences, University of Stirling, Scotland, U.K.

出版信息

Biochem J. 1999 Feb 15;338 ( Pt 1)(Pt 1):195-202.

Abstract

The dodecameric type II dehydroquinases (DHQases) have an unusual quaternary structure in which four trimeric units are arranged with cubic 23 symmetry. The unfolding and refolding behaviour of the enzymes from Streptomyces coelicolor and Mycobacterium tuberculosis have been studied. Gel-permeation studies show that, at low concentrations (0.5 M) of guanidinium chloride (GdmCl), both enzymes dissociate into trimeric units, with little or no change in the secondary or tertiary structure and with a 15% loss (S. coelicolor) or a 55% increase (M. tuberculosis) in activity. At higher concentrations of GdmCl, both enzymes undergo sharp unfolding transitions over narrow ranges of the denaturant concentration, consistent with co-operative unfolding of the subunits. When the concentration of GdmCl is lowered by dilution from 6 M to 0.55 M, the enzyme from S. coelicolor refolds in an efficient manner to form trimeric units, with more than 75% regain of activity. Using a similar approach the M. tuberculosis enzyme regains less than 35% activity. From the time courses of the changes in CD, fluorescence and activity of the S. coelicolor enzyme, an outline model for the refolding of the enzyme has been proposed. The model involves a rapid refolding event in which approximately half the secondary structure is regained. A slower folding process follows within the monomer, resulting in acquisition of the full secondary structure. The major changes in fluorescence occur in a second-order process which involves the association of two folded monomers. Regain of activity is dependent on a further associative event, showing that the minimum active unit must be at least trimeric. Reassembly of the dodecameric S. coelicolor enzyme and essentially complete regain of activity can be accomplished if the denatured enzyme is dialysed extensively to remove GdmCl. These results are discussed in terms of the recently solved X-ray structures of type II DHQases from these sources.

摘要

十二聚体II型脱氢奎尼酸酶(DHQases)具有不寻常的四级结构,其中四个三聚体单元以立方23对称性排列。对来自天蓝色链霉菌和结核分枝杆菌的这种酶的展开和重折叠行为进行了研究。凝胶渗透研究表明,在低浓度(0.5 M)的氯化胍(GdmCl)下,两种酶均解离为三聚体单元,二级或三级结构几乎没有变化,活性损失15%(天蓝色链霉菌)或增加55%(结核分枝杆菌)。在较高浓度的GdmCl下,两种酶在变性剂浓度的狭窄范围内都经历急剧的展开转变,这与亚基的协同展开一致。当通过稀释将GdmCl浓度从6 M降低到0.55 M时,天蓝色链霉菌的酶以高效方式重折叠形成三聚体单元,活性恢复超过75%。使用类似方法,结核分枝杆菌的酶活性恢复不到35%。根据天蓝色链霉菌酶的圆二色性(CD)、荧光和活性变化的时间进程,提出了该酶重折叠的轮廓模型。该模型涉及一个快速重折叠事件,其中大约一半的二级结构得以恢复。随后在单体内部发生较慢的折叠过程,导致获得完整的二级结构。荧光的主要变化发生在一个二级过程中,该过程涉及两个折叠单体的缔合。活性的恢复取决于进一步的缔合事件,表明最小活性单元至少必须是三聚体。如果将变性酶广泛透析以去除GdmCl,则可以完成十二聚体天蓝色链霉菌酶的重新组装并基本完全恢复活性。根据最近解析的来自这些来源的II型DHQases的X射线结构对这些结果进行了讨论。

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