Repression of Human T-lymphotropic virus type 1 Long Terminal Repeat sense transcription by Sp1 recruitment to novel Sp1 binding sites

被引:0
作者
Sylvain Fauquenoy
Gwenaëlle Robette
Anna Kula
Caroline Vanhulle
Sophie Bouchat
Nadège Delacourt
Anthony Rodari
Céline Marban
Christian Schwartz
Arsène Burny
Olivier Rohr
Benoit Van Driessche
Carine Van Lint
机构
[1] Service of Molecular Virology,Department of Molecular Biology (DBM)
[2] Université Libre de Bruxelles (ULB),undefined
[3] Rue des Professeurs Jeener et Brachet 12,undefined
[4] Biomaterials and Bioengineering,undefined
[5] Inserm UMR 1121,undefined
[6] Faculty of Dentistry,undefined
[7] University of Strasbourg,undefined
[8] Institut Universitaire de Technologie Louis Pasteur,undefined
[9] University of Strasbourg,undefined
[10] Laboratory of Dynamic of Host-Pathogen Interactions (DHPI),undefined
[11] EA7292,undefined
[12] University of Strasbourg,undefined
[13] Laboratory of Experimental Hematology,undefined
[14] Institut Jules Bordet,undefined
[15] Université Libre de Bruxelles (ULB),undefined
[16] Present address: BePharbel Manufacturing,undefined
[17] Rue du Luxembourg,undefined
[18] Courcelles,undefined
[19] Belgium.,undefined
来源
Scientific Reports | / 7卷
关键词
D O I
暂无
中图分类号
学科分类号
摘要
Human T-lymphotropic Virus type 1 (HTLV-1) infection is characterized by viral latency in the majority of infected cells and by the absence of viremia. These features are thought to be due to the repression of viral sense transcription in vivo. Here, our in silico analysis of the HTLV-1 Long Terminal Repeat (LTR) promoter nucleotide sequence revealed, in addition to the four Sp1 binding sites previously identified, the presence of two additional potential Sp1 sites within the R region. We demonstrated that the Sp1 and Sp3 transcription factors bound in vitro to these two sites and compared the binding affinity for Sp1 of all six different HTLV-1 Sp1 sites. By chromatin immunoprecipitation experiments, we showed Sp1 recruitment in vivo to the newly identified Sp1 sites. We demonstrated in the nucleosomal context of an episomal reporter vector that the Sp1 sites interfered with both the sense and antisense LTR promoter activities. Interestingly, the Sp1 sites exhibited together a repressor effect on the LTR sense transcriptional activity but had no effect on the LTR antisense activity. Thus, our results demonstrate the presence of two new functional Sp1 binding sites in the HTLV-1 LTR, which act as negative cis-regulatory elements of sense viral transcription.
引用
收藏
相关论文
共 147 条
[1]  
Matsuoka M(2007)Human T-cell leukaemia virus type 1 (HTLV-1) infectivity and cellular transformation Nat Rev Cancer 7 270-280
[2]  
Jeang KT(2005)Global epidemiology of HTLV-I infection and associated diseases Oncogene 24 6058-6068
[3]  
Proietti FA(1982)Isolation and characterization of retrovirus from cell lines of human adult T-cell leukemia and its implication in the disease Proc Natl Acad Sci USA 79 2031-2035
[4]  
Carneiro-Proietti AB(1981)Adult T-cell leukemia: antigen in an ATL cell line and detection of antibodies to the antigen in human sera Proc Natl Acad Sci USA 78 6476-6480
[5]  
Catalan-Soares BC(2011)HTLV-1-associated myelopathy/tropical spastic paraparesis (HAM/TSP): still an obscure disease Central nervous system agents in medicinal chemistry 11 239-245
[6]  
Murphy EL(2007)Human T-cell leukemia virus type I induces adult T-cell leukemia: from clinical aspects to molecular mechanisms Cancer Control 14 133-140
[7]  
Yoshida M(2010)Epidemiology, treatment, and prevention of human T-cell leukemia virus type 1-associated diseases Clinical microbiology reviews 23 577-589
[8]  
Miyoshi I(1999)Assessment of bovine leukemia virus transcripts J Virol 73 8890-8897
[9]  
Hinuma Y(1990)High human T-cell lymphotropic virus type I proviral DNA load with polyclonal integration in peripheral blood mononuclear cells of French West Indian, Guianese, and African patients with tropical spastic paraparesis Blood 75 428-433
[10]  
Hinuma Y(2007)Complete suppression of viral gene expression is associated with the onset and progression of lymphoid malignancy: observations in Bovine Leukemia Virus-infected sheep Retrovirology 4 51-59