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Wang SM, Chang YF, Chen YM, et al. 
Severe acute respiratory syndrome coronavirus nucleocapsid protein confers ability to efficiently produce virus-like particles when substituted for the human immunodeficiency virus nucleocapsid domain. [JOURNAL ARTICLE]
J Biomed Sci 2008 Jul 1.
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Hsieh PK, Chang SC, Huang CC, et al. 
Assembly of severe acute respiratory syndrome coronavirus RNA packaging signal into virus-like particles is nucleocapsid dependent. [Journal Article]
J Virol 2005 Nov; 79(22):13848-55.
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Chang CY, Chang YF, Wang SM, et al. 
HIV-1 matrix protein repositioning in nucleocapsid region fails to confer virus-like particle assembly. [JOURNAL ARTICLE]
Virology 2008 Jun 11.
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Luo H, Chen J, Chen K, et al. 
Carboxyl terminus of severe acute respiratory syndrome coronavirus nucleocapsid protein: self-association analysis and nucleic Acid binding characterization. [Journal Article]
Biochemistry 2006 Oct 3; 45(39):11827-35.
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Siu YL, Teoh KT, Lo J, et al. 
The M, E and N structural proteins of the SARS coronavirus are required for efficient assembly, trafficking and release of virus-like particles. [JOURNAL ARTICLE]
J Virol 2008 Aug 27.
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Ren W, Qu X, Li W, et al. 
Difference in receptor usage between SARS coronavirus and SARS-like coronavirus of bat origin. [JOURNAL ARTICLE]
J Virol 2007 Dec 12.
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Zhang Y, Barklis E 
Effects of nucleocapsid mutations on human immunodeficiency virus assembly and RNA encapsidation. [Journal Article]
J Virol 1997 Sep; 71(9):6765-76.
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Surjit M, Liu B, Kumar P, et al. 
The nucleocapsid protein of the SARS coronavirus is capable of self-association through a C-terminal 209 amino acid interaction domain. [Journal Article]
Biochem Biophys Res Commun 2004 May 14; 317(4):1030-6.
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Accola MA, Strack B, Göttlinger HG 
Efficient particle production by minimal Gag constructs which retain the carboxy-terminal domain of human immunodeficiency virus type 1 capsid-p2 and a late assembly domain. [Journal Article]
J Virol 2000 Jun; 74(12):5395-402.
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