Investigation of C-terminal domain of SARS nucleocapsid protein–Duplex DNA interaction using transistors and binding-site models

Author:

Hsu You-Ren,Kang Yen-Wen,Fang Jung-Ying,Lee Geng-Yen,Chyi Jen-Inn,Chang Chung-ke,Huang Chih-Cheng,Hsu Chen-Pin,Huang Tai-huang,Huang Yu-Fen,Sun Yuh-Chang,Hsu Chia-Hsien,Chen Chih-Chen,Li Sheng-Shian,Yeh J. Andrew,Yao Da-Jeng,Ren Fan,Wang Yu-Lin

Funder

National Science Council

National Tsing Hua University

Publisher

Elsevier BV

Subject

Materials Chemistry,Electrical and Electronic Engineering,Metals and Alloys,Surfaces, Coatings and Films,Condensed Matter Physics,Instrumentation,Electronic, Optical and Magnetic Materials

Reference32 articles.

1. SARS-beginning to understand a new virus;Stadler;Nature Reviews Microbiology,2003

2. Ribonucleocapsid formation of severe acute respiratory syndrome coronavirus through molecular action of the N-terminal domain of N protein;Saikatendu;Journal of Virology,2007

3. Multiple nucleic acid binding sites and intrinsic disorder of SARS coronavirus nucleocapsid protein-implication for ribonucleocapsid protein packaging;Chang;Journal of Virology,2008

4. Solution structure of the C-terminal dimerization domain of SARS coronavirus nucleocapsid protein solved by the SAIL-NMR method;Takeda;Journal of Molecular Biology,2008

5. Structure of the SARS coronavirus nucleocapsid protein RNA-binding dimerization domain suggests a mechanism for helical packaging of viral RNA;Chen;Journal of Molecular Biology,2007

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