Patterns of structural dynamics in RACK1 protein retained throughout evolution: A hydrogen-deuterium exchange study of three orthologs

被引:11
作者
Tarnowski, Krzysztof [1 ,2 ]
Fituch, Kinga [1 ,2 ]
Szczepanowski, Roman H. [3 ]
Dadlez, Michal [1 ,2 ,4 ]
Kaus-Drobek, Magdalena [1 ,2 ]
机构
[1] Polish Acad Sci, Inst Biochem, PL-02106 Warsaw, Poland
[2] Polish Acad Sci, Dept Biophys, PL-02106 Warsaw, Poland
[3] Core Facil, Int Inst Mol & Cell Biol, PL-02109 Warsaw, Poland
[4] Warsaw Univ, Dept Biol, Inst Genet & Biotechnol, PL-02185 Warsaw, Poland
关键词
receptor for activated C kinase; WD repeats; scaffolding protein; cell signaling; hydrogen deuterium exchange; mass spectrometry; protein dynamics; G-BETA-GAMMA; TYROSINE PHOSPHORYLATION; INTRACELLULAR RECEPTOR; SCAFFOLD PROTEIN; MAMMALIAN RACK1; KINASE-C; SUBUNIT; RIBOSOME; PROMOTES; HOMOLOG;
D O I
10.1002/pro.2448
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
RACK1 is a member of the WD repeat family of proteins and is involved in multiple fundamental cellular processes. An intriguing feature of RACK1 is its ability to interact with at least 80 different protein partners. Thus, the structural features enabling such interactomic flexibility are of great interest. Several previous studies of the crystal structures of RACK1 orthologs described its detailed architecture and confirmed predictions that RACK1 adopts a seven-bladed -propeller fold. However, this did not explain its ability to bind to multiple partners. We performed hydrogen-deuterium (H-D) exchange mass spectrometry on three orthologs of RACK1 (human, yeast, and plant) to obtain insights into the dynamic properties of RACK1 in solution. All three variants retained similar patterns of deuterium uptake, with some pronounced differences that can be attributed to RACK1's divergent biological functions. In all cases, the most rigid structural elements were confined to B-C turns and, to some extent, strands B and C, while the remaining regions retained much flexibility. We also compared the average rate constants for H-D exchange in different regions of RACK1 and found that amide protons in some regions exchanged at least 1000-fold faster than in others. We conclude that its evolutionarily retained structural architecture might have allowed RACK1 to accommodate multiple molecular partners. This was exemplified by our additional analysis of yeast RACK1 dimer, which showed stabilization, as well as destabilization, of several interface regions upon dimer formation.
引用
收藏
页码:639 / 651
页数:13
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