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尿素变性伴侣蛋白GroEL中的残余结构

Residual structure in urea-denatured chaperonin GroEL.

作者信息

Gorovits B M, Seale J W, Horowitz P M

机构信息

Department of Biochemistry, University of Texas Health Sciences Center at San Antonio 78240-7760, USA.

出版信息

Biochemistry. 1995 Oct 24;34(42):13928-33. doi: 10.1021/bi00042a026.

Abstract

The urea denaturation of the chaperonin GroEL has been studied by circular dichroism, intrinsic tyrosine fluorescence and fluorescence of the hydrophobic probe, 1,1'-bis(4-anilino)naphthalene-5,5'-disulfonic acid (bisANS). It is shown that GroEL denaturation, monitored by CD and intrinsic fluorescence measurements, can be well described by a two-state transition that is complete by 3-3.1 M urea. The beginning of this transition overlaps the urea concentrations where the oligomeric protein starts to dissociate into individual monomers. Subsequent addition of the denaturant leads to complete unfolding of the monomers. Monomers unfolded at urea concentrations higher than 3.1 M are not competent to form their native conformations under the conditions employed here, and they are not able to reassemble to oligomers upon dilution of urea. In contrast to the CD and intrinsic fluorescence measurements, bisANS bound to GroEL exhibits considerable fluorescence intensity under conditions where the CD and intrinsic fluorescence signals have already reached their minimum values (> 3.1 M urea). This binding of bisANS, under conditions where the majority of the secondary structure of GroEL has already unfolded, indicates the existence of hydrophobic residual structure. This structure cannot be detected by CD measurements, but it can be unfolded by raising further the urea concentration. The existence of this structure does not depend on the source or method of the protein preparation. Intrinsic fluorescence and trypsin digestion demonstrate no difference between the bisANS-bound form of GroEL and the free form of the protein, showing that the GroEL structure is not greatly affected by the interaction with bisANS.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

通过圆二色性、内在酪氨酸荧光以及疏水探针1,1'-双(4-苯胺基)萘-5,5'-二磺酸(bisANS)的荧光,对伴侣蛋白GroEL的尿素变性进行了研究。结果表明,通过圆二色性和内在荧光测量监测到的GroEL变性,可以很好地用一个两态转变来描述,该转变在3 - 3.1 M尿素时完成。这个转变的开始与寡聚蛋白开始解离成单个单体的尿素浓度重叠。随后加入变性剂会导致单体完全展开。在高于3.1 M的尿素浓度下展开的单体,在此处使用的条件下无法形成其天然构象,并且在尿素稀释后也无法重新组装成寡聚体。与圆二色性和内在荧光测量不同,与GroEL结合的bisANS在圆二色性和内在荧光信号已经达到最小值(> 3.1 M尿素)的条件下,表现出相当大的荧光强度。在GroEL的大部分二级结构已经展开的条件下,bisANS的这种结合表明存在疏水残余结构。这种结构无法通过圆二色性测量检测到,但可以通过进一步提高尿素浓度来展开。这种结构的存在不依赖于蛋白质制备的来源或方法。内在荧光和胰蛋白酶消化表明,与bisANS结合的GroEL形式和蛋白质的游离形式之间没有差异,这表明GroEL结构受与bisANS相互作用的影响不大。(摘要截于250字)

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