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Protomer Roles in Chloroplast Chaperonin Assembly and Function.

Authors :
Bai, Cuicui
Guo, Peng
Zhao, Qian
Lv, Zongyang
Zhang, Shijia
Gao, Fei
Gao, Liyan
Wang, Yingchun
Tian, Zhixi
Wang, Jifeng
Yang, Fuquan
Liu, Cuimin
Source :
Molecular Plant (Cell Press). Oct2015, Vol. 8 Issue 10, p1478-1492. 15p.
Publication Year :
2015

Abstract

The individual roles of three chloroplast CPN60 protomers (CPN60α, CPN60β1, and CPN60β2) and whether and how they are assembled into functional chaperonin complexes are investigated in Chlamydomonas reinhardtii . Protein complexes containing all three potential subunits were identified in Chlamydomonas , and their co-expression in Escherichia coli yielded a homogeneous population of oligomers containing all three subunits (CPN60αβ1β2), with a molecular weight consistent with a tetradecameric structure. While homo-oligomers of CPN60β could form, they were dramatically reduced when CPN60α was present and homo-oligomers of CPN60β2 were readily changed into hetero-oligomers in the presence of ATP and other protomers. ATP hydrolysis caused CPN60 oligomers to disassemble and drove the purified protomers to reconstitute oligomers in vitro , suggesting that the dynamic nature of CPN60 oligomers is dependent on ATP. Only hetero-oligomeric CPN60αβ1β2, containing CPN60α, CPN60β1, and CPN60β2 subunits in a 5:6:3 ratio, cooperated functionally with GroES. The combination of CPN60α and CPN60β subunits, but not the individual subunits alone, complemented GroEL function in E. coli with subunit recognition specificity. Down-regulation of the CPN60α subunit in Chlamydomonas resulted in a slow growth defect and an inability to grow autotrophically, indicating the essential role of CPN60α in vivo . [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
16742052
Volume :
8
Issue :
10
Database :
Academic Search Index
Journal :
Molecular Plant (Cell Press)
Publication Type :
Academic Journal
Accession number :
109982901
Full Text :
https://doi.org/10.1016/j.molp.2015.06.002