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 1-20    21-29 
1.
Antibodies to protein P in systemic lupus erythematosus // Ann. Rheum. Diseases, 1992. Vol. 51, N 4.-С.489-494

2.
Bartenschlager Expression of the P-protein of the human hepatitis B virus in a vaccinia virus system and detection of the nucleocapsid-associated P-gene product by radiolabelling at newly introduced phosphorylation sites // Nucl. Acids Res., 1992. Vol. 20, N 2.-С.195-202

3.
Benz Mechanism of anion transport through the phosphate-starvation-inducible outer membrane protein P of Pseudomonas aeruginosa // Transp. through Membranes: Carriers, Channels and Pumps. -Dordrecht etc., 1988.-С.441-454

4.
C-terminal phosphorylation of human respiratory syncytial virus P protein occurs mainly at serine residue 232 // J. Gen. Virol., 1995. Vol. 76, N 2.-С.425-430

5.
Correlation of antibodies to ribosomal P protein with psychosis in patients with systemic lupus erythematosus // Ann. Rheum. Riseases, 1992. Vol. 51, N 9.-С.1053-1055

6.
Curran A role for the Sendai virus P protein trimer in RNA synthesis // J. Virol., 1998. Vol. 72, N 5.-С.4274-4280

7.
Curran An N-terminal domain of the Sendai paramyxovirus P protein acts as a chaperone for the NP protein during the nascent chain assembly step of genome replication // J. Virol., 1995. Vol. 69, N 2.-С.849-855

8.
Das Role of the phosphoprotein (P) in the encapsidation of presynthesized and de novo synthesized vesicular stomatitis virus rna by the nucleocapsid protein (N) in vitro // Cell. and Mol. Biol., 1992. Vol. 38, N 1.-С.17-26

9.
Elango Sequence analysis of the mumps virus mRNA encoding the P protein // Virology, 1989. Vol. 169, N 1.-С.62-67

10.
Gupta R.S. Mitochondria molecular chaperone proteins and the in vivo assembly of microtubules // Trends. Biochem. Sci., 1990. Vol. 15, N 11.-С.415-418

11.
Hepadnavirus P protein utilizes a tyrosine residue in the TP domain to prime reverse transcription // J. Virol., 1994. Vol. 68, N 5.-С.2994-2999

12.
Holtel A. The Klebsiella pneumoniae P protein (glnB gene product) is not absolutely required for nitrogen regulation and is not involved in NifL-mediated nif gene regulation // Mol. and Gen. Genet., 1989. Vol. 217, N 2-3.-С.474-480

13.
Intracellular phosphorylation of the Sendai virus P protein // Virology, 1995. Vol. 208, N 1.-С.408-413

14.
Johnson Philip R. Sequence comparison of the phosphoprotein mRNAs of antigenic subgroups A and B of human respiratory syncytial virus identifies a highly divergent domain in the predicted protein // J. Gen. Virol., 1990. Vol. 71, N 2.-С.481-485

15.
Mapping of monoclonal antibodies to the Sendai virus P protein and the location of its phosphates // J. Virol., 1988. Vol. 62, N 6.-С.2200-2203

16.
McGinnes L. The P protein and the nonstructural 38К and 29К proteins of Newcastle disease virus are derived from the same open reading frame // Virology, 1988. Vol. 164, N 1.-С.256-264

17.
Respiratory syncytial virus: Heterogeneity of subgroup B strains // J. Gen. Virol., 1988. Vol. 69, N 9.-С.2145-2154

18.
Ryan Kevin W. Separate domains of Sendai virus P protein are required for binding to viral nucleocapsids // Virology, 1990. Vol. 174, N 2.-С.515-521

19.
Ryan Kevin W. Карбоксилтерминальная область белка P вируса Сендай требуется для связывания с вирусными нуклеокапсидами. Carboxyl-terminal region of Sendai virus P protein is required for binding to viral nucleocapsids // Virology, 1988. Vol. 167, N 1.-С.106-112

20.
Sendai virus protein-protein interactions studied by a protein-blotting protein-overlay technique: mapping of domains on NP protein required for binding to P protein // J. Virol., 1991. Vol. 65, N 3.-С.1304-1309

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