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Dynamics of Linker Residues Modulate the Nucleic Acid Binding Properties of the HIV-1 Nucleocapsid Protein Zinc Fingers
被引:14
|作者:
Zargarian, Loussine
[1
]
Tisne, Carine
[2
]
Barraud, Pierre
[2
]
Xu, Xiaoqian
[1
,3
]
Morellet, Nelly
[4
]
Rene, Brigitte
[1
]
Mely, Yves
[5
]
Fosse, Philippe
[1
]
Mauffret, Olivier
[1
]
机构:
[1] CNRS, Unite Mixte Rech 8113, Ecole Normale Super Cachan, Lab Biol & Pharmacol Appl, Cachan, France
[2] Univ Paris 05, Unite Mixte Rech 8015, CNRS, Lab Cristallog & RMN Biol, Paris, France
[3] E China Normal Univ, Dept Life Sci, Shanghai 200062, Peoples R China
[4] CNRS, Inst Chim Subst Nat, Ctr Rech Gif, Gif Sur Yvette, France
[5] Univ Strasbourg, Fac Pharm, CNRS, Lab Biophoton & Pharmacol,Unite Mixte Rech 7213, Illkirch Graffenstaden, France
来源:
关键词:
IMMUNODEFICIENCY-VIRUS TYPE-1;
MODEL-FREE APPROACH;
MAGNETIC-RESONANCE RELAXATION;
BACKBONE DYNAMICS;
NMR RELAXATION;
CHAPERONE ACTIVITY;
STRAND TRANSFER;
CTAR DNA;
STRUCTURAL DETERMINANTS;
REVERSE TRANSCRIPTION;
D O I:
10.1371/journal.pone.0102150
中图分类号:
O [数理科学和化学];
P [天文学、地球科学];
Q [生物科学];
N [自然科学总论];
学科分类号:
07 ;
0710 ;
09 ;
摘要:
The HIV-1 nucleocapsid protein (NC) is a small basic protein containing two zinc fingers (ZF) separated by a short linker. It is involved in several steps of the replication cycle and acts as a nucleic acid chaperone protein in facilitating nucleic acid strand transfers occurring during reverse transcription. Recent analysis of three-dimensional structures of NC-nucleic acids complexes established a new property: the unpaired guanines targeted by NC are more often inserted in the C-terminal zinc finger (ZF2) than in the N-terminal zinc finger (ZF1). Although previous NMR dynamic studies were performed with NC, the dynamic behavior of the linker residues connecting the two ZF domains remains unclear. This prompted us to investigate the dynamic behavior of the linker residues. Here, we collected N-15 NMR relaxation data and used for the first time data at several fields to probe the protein dynamics. The analysis at two fields allows us to detect a slow motion occurring between the two domains around a hinge located in the linker at the G35 position. However, the amplitude of motion appears limited in our conditions. In addition, we showed that the neighboring linker residues R29, A30, P31, R32, K33 displayed restricted motion and numerous contacts with residues of ZF1. Our results are fully consistent with a model in which the ZF1-linker contacts prevent the ZF1 domain to interact with unpaired guanines, whereas the ZF2 domain is more accessible and competent to interact with unpaired guanines. In contrast, ZF1 with its large hydrophobic plateau is able to destabilize the double-stranded regions adjacent to the guanines bound by ZF2. The linker residues and the internal dynamics of NC regulate therefore the different functions of the two zinc fingers that are required for an optimal chaperone activity.
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页数:12
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