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使用增强型酰胺氢/氘交换质谱法(DXMS)剖析IIβ型cAPK调节亚基内的结构域间通讯。

Dissecting interdomain communication within cAPK regulatory subunit type IIbeta using enhanced amide hydrogen/deuterium exchange mass spectrometry (DXMS).

作者信息

Zawadzki Kerri M, Hamuro Yoshitomo, Kim Jack S, Garrod Siv, Stranz David D, Taylor Susan S, Woods Virgil L

机构信息

Department of Chemistry and Biochemistry, University of California, San Diego, La Jolla, California 92093, USA.

出版信息

Protein Sci. 2003 Sep;12(9):1980-90. doi: 10.1110/ps.03166903.

Abstract

cAMP-dependent protein kinase (cAPK) is a heterotetramer containing a regulatory (R) subunit dimer bound to two catalytic (C) subunits and is involved in numerous cell signaling pathways. The C-subunit is activated allosterically when two cAMP molecules bind sequentially to the cAMP-binding domains, designated A and B (cAB-A and cAB-B, respectively). Each cAMP-binding domain contains a conserved Arg residue that is critical for high-affinity cAMP binding. Replacement of this Arg with Lys affects cAMP affinity, the structural integrity of the cAMP-binding domains, and cAPK activation. To better understand the local and long-range effects that the Arg-to-Lys mutation has on the dynamic properties of the R-subunit, the amide hydrogen/deuterium exchange in the RIIbeta subunit was probed by electrospray mass spectrometry. Mutant proteins containing the Arg-to-Lys substitution in either cAMP-binding domain were deuterated for various times and then, prior to mass spectrometry analysis, subjected to pepsin digestion to localize the deuterium incorporation. Mutation of this Arg in cAB-A (Arg230) causes an increase in amide hydrogen exchange throughout the mutated domain that is beyond the modest and localized effects of cAMP removal and is indicative of the importance of this Arg in domain organization. Mutation of Arg359 (cAB-B) leads to increased exchange in the adjacent cAB-A domain, particularly in the cAB-A domain C-helix that lies on top of the cAB-B domain and is believed to be functionally linked to the cAB-B domain. This interdomain communication appears to be a unidirectional pathway, as mutation of Arg230 in cAB-A does not effect dynamics of the cAB-B domain.

摘要

环磷酸腺苷依赖性蛋白激酶(cAPK)是一种异源四聚体,由一个与两个催化(C)亚基结合的调节(R)亚基二聚体组成,参与众多细胞信号通路。当两个环磷酸腺苷(cAMP)分子依次结合到指定为A和B的cAMP结合结构域(分别为cAB - A和cAB - B)时,C亚基通过变构作用被激活。每个cAMP结合结构域都包含一个保守的精氨酸(Arg)残基,这对于高亲和力的cAMP结合至关重要。用赖氨酸(Lys)取代这个Arg会影响cAMP亲和力、cAMP结合结构域的结构完整性以及cAPK的激活。为了更好地理解Arg到Lys突变对R亚基动态特性的局部和远程影响,通过电喷雾质谱法探测了RIIβ亚基中的酰胺氢/氘交换。在任一cAMP结合结构域中含有Arg到Lys取代的突变蛋白在不同时间进行氘代,然后在质谱分析之前,用胃蛋白酶消化以定位氘的掺入。cAB - A(Arg230)中这个Arg的突变导致整个突变结构域的酰胺氢交换增加,这超出了去除cAMP的适度和局部影响,表明该Arg在结构域组织中的重要性。Arg359(cAB - B)的突变导致相邻的cAB - A结构域中交换增加,特别是在位于cAB - B结构域之上且被认为在功能上与cAB - B结构域相关联的cAB - A结构域C螺旋中。这种结构域间的通讯似乎是一条单向途径,因为cAB - A中Arg230的突变不会影响cAB - B结构域的动力学。

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