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 1-20    21-29 
1.
Campo M.Saveria Infection by bovine papillomavirus and prospects for vaccination // Trends Microbiol., 1995. Vol. 3, N 3.-С.92-97

2.
T cell responses to BPV-4 E7 during infection and mapping of T cell epitopes // Virology, 1995. Vol. 206, N 1.-С.504-510

3.
Scobie The role of exogenous p53 and E6 oncoproteins in in virto transformation by bovine papillomavirus type 4 (BPV-4): Significance of the absence of an E6 ORF in the BPV-4 genome // J. Gen. Virol., 1997. Vol. 78, N 11.-С.3001-3008

4.
Scobie The role of exogenous p53 and E6 oncoproteins in in virto transformation by bovine papillomavirus type 4 (BPV-4): Significance of the absence of an E6 ORF in the BPV-4 genome // J. Gen. Virol., 1997. Vol. 78, N 11.-С.3001-3008

5.
A peptide encoding a B-cell epitope from the N-terminus of the capsid protein L2 of bovine papillomavirus-4 prevents disease // Virology, 1997. Vol. 234, N 2.-С.261-266

6.
The BPV-4 co-carcinogen quercetin induces cellcyle arrest and up-regulates transcription from the LCR of BPV-4 // Oncogene, 1998. Vol. 16, N 21.-С.2739-2746

7.
The BPV-4 co-carcinogen quercetin induces cellcyle arrest and up-regulates transcription from the LCR of BPV-4 // Oncogene, 1998. Vol. 16, N 21.-С.2739-2746

8.
Morgan Iain M. Epithelial specific transcriptional regulation of the bovine papillomavirus 4 promoter by E2 // J. Gen. Virol., 1998. Vol. 79, N 3.-С.501-508

9.
Vance Keith W. An enhanced epithelial response of a papillomavirus promoter to transcriptional activators // J. Biol. Chem., 1999. Vol. 274, N 39.-С.27839-27844

10.
A mutational analysis of the transforming functions of the E8 protein of bovine papillomavirus type 4 // Virology, 1999. Vol. 255, N 2.-С.385-394

11.
Morgan Iain M. The bovine papillomavirus type 4 long control region contains an epithelial specific enhancer // J. Gen. Virol., 1999. Vol. 80, N 1.-С.23-27

12.
'альфа'6 integrin is not the obligatory cell receptor for bovine papillomavirus type 4 // J. Gen. Virol., 2000. Vol. 81, N 2.-С.327-334

13.
Binding of bovine papillomavirus type 4 E8 to ductin (16K proteolipid), down-regulation of gap junction intercellular communication and full cell transformation are independent events // J. Gen. Virol., 2000. Vol. 81, N 3.-С.689-694

14.
E5 transforming proteins of papillomaviruses do not disturb the activity of the vacuolar H{+}-ATPase // J. Gen. Virol., 2001. Vol. 82, N 10.-С.2353-2362

15.
E5 protein of human papillomavirus type 16 selectively downregulates surface HLA class I // Int. J. Cancer, 2005. Vol. 113, N 2.-С.276-283

16.
E5 protein of human papillomavirus type 16 selectively downregulates surface HLA class I // Int. J. Cancer, 2005. Vol. 113, N 2.-С.276-283

17.
E5 protein of human papillomavirus 16 downregulates HLA class I and interacts with the heavy chain via its first hydrophobic domain // Int. J. Cancer, 2006. Vol. 119, N 9.-С.2105-2112

18.
E5 protein of human papillomavirus 16 downregulates HLA class I and interacts with the heavy chain via its first hydrophobic domain // Int. J. Cancer, 2006. Vol. 119, N 9.-С.2105-2112

19.
Human papillomavirus research: Do we still need animal models? // Int. J. Cancer, 2009. Vol. 125, N 3.-С.739-740

20.
Human papillomavirus research: Do we still need animal models? // Int. J. Cancer, 2009. Vol. 125, N 3.-С.739-740

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