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IIβ型cAPK调节亚基的内源性色氨酸残基揭示了环境和动力学的局部差异。

Endogenous tryptophan residues of cAPK regulatory subunit type IIbeta reveal local variations in environments and dynamics.

作者信息

Zawadzki Kerri M, Pan Chia-Pin, Barkley Mary D, Johnson David, Taylor Susan S

机构信息

Department of Chemistry and Biochemistry, University of California, San Diego, La Jolla, USA.

出版信息

Proteins. 2003 Jun 1;51(4):552-61. doi: 10.1002/prot.10326.

Abstract

The amino terminal dimerization/docking domain and the two-tandem, carboxy-terminal cAMP-binding domains (A and B) of cAMP-dependent protein kinase regulatory (R) subunits are connected by a variable linker region. In addition to providing a docking site for the catalytic subunit, the linker region is a major source of sequence diversity between the R-subunit isoforms. The RIIbeta isoform uniquely contains two endogenous tryptophan residues, one at position 58 in the linker region and the other at position 243 in cAMP-binding domain A, which can act as intrinsic reporter groups of their dynamics and microenvironment. Two single-point mutations, W58F and W243F, allowed the local environment of each Trp to be probed using steady-state and time-resolved fluorescence techniques. We report that: (a) the tryptophan fluorescence of the wild-type protein largely reflects Trp243 emission; (2) cAMP selectively quenches Trp243 and thus acts as a cAMP sensor; (3) Trp58 resides in a highly solvated, unstructured, and mobile region of the protein; and (4) Trp243 resides in a stable, folded domain and is relatively buried and rigid within the domain. The use of endogenous Trp residues presents a non-perturbing method for studying R-subunit subdomain characteristics in addition to providing the first biophysical data on the RIIbeta linker region.

摘要

环磷酸腺苷(cAMP)依赖性蛋白激酶调节(R)亚基的氨基末端二聚化/对接结构域与两个串联的羧基末端cAMP结合结构域(A和B)通过可变连接区相连。除了为催化亚基提供对接位点外,连接区还是R亚基同工型之间序列多样性的主要来源。RIIβ同工型独特地含有两个内源性色氨酸残基,一个在连接区的第58位,另一个在cAMP结合结构域A的第243位,它们可作为其动力学和微环境的内在报告基团。两个单点突变W58F和W243F,使得可以使用稳态和时间分辨荧光技术探测每个色氨酸的局部环境。我们报告:(a)野生型蛋白的色氨酸荧光很大程度上反映了Trp243的发射;(2)cAMP选择性淬灭Trp243,因此可作为cAMP传感器;(3)Trp58位于蛋白的高度溶剂化、无结构且可移动的区域;(4)Trp243位于稳定的折叠结构域中,并且在该结构域内相对埋藏且刚性。使用内源性色氨酸残基除了提供关于RIIβ连接区的首个生物物理数据外,还为研究R亚基亚结构域特征提供了一种无干扰的方法。

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