Cyclic AMP-Mediated Growth Arrest Is Associated with Increased Expression of Human T Cell Leukemia Virus Type I Structural and Transforming Genes

1996 ◽  
Vol 12 (6) ◽  
pp. 527-533 ◽  
Author(s):  
HARRY T. POTEAT ◽  
URBAN RAMSTEDT ◽  
SAM YOON ◽  
MICHAEL DARDIK ◽  
ERNEST TERWILLIGER ◽  
...  
1994 ◽  
Vol 14 (8) ◽  
pp. 5371-5383 ◽  
Author(s):  
X Xu ◽  
D A Brown ◽  
I Kitajima ◽  
J Bilakovics ◽  
L W Fey ◽  
...  

To analyze regulation of the human T-cell leukemia virus type I (HTLV-I) long terminal repeat (LTR), cell lines were generated from LTR-tax x LTR-beta-galactosidase (beta-Gal) doubly transgenic mouse fibroblastic tumors. The HTLV-I LTR directs expression of both the tax and lacZ genes, and Tax up-modulates both promoters in primary cells. However, once cells were transformed by tax, beta-Gal but not tax expression was suppressed. Supertransformation of these cells with v-src suppressed both beta-Gal and tax expression. This suppression was reversed by treatment with the tyrosine kinase inhibitor herbimycin A or protein kinase A inhibitor H8. Electrophoretic mobility shift assays demonstrated augmented binding in the R but not U3 region. This binding was competitively inhibited by a high-affinity CREB oligodeoxynucleotide and super-shifted with a specific CREB antibody. Treatment of cells with the cyclic AMP analog dibutyryl cyclic AMP also transiently increased the R region binding dramatically. In vitro DNase I footprint analysis identified a protein-binding sequence in the R region which corresponded with suppression. However, this target sequence lacked a conventional CREB-binding site. A 70.5-kDa DNA-binding protein was partially purified by affinity chromatography, along with a 49-kDa protein which reacted with CREB-specific sera. These data demonstrate that HTLV-I LTR suppression is associated with CREB factor binding in the R region, probably by direct interaction with a 70.5-kDa protein, and provide a novel mechanism for maintenance of viral latency.


1994 ◽  
Vol 14 (8) ◽  
pp. 5371-5383
Author(s):  
X Xu ◽  
D A Brown ◽  
I Kitajima ◽  
J Bilakovics ◽  
L W Fey ◽  
...  

To analyze regulation of the human T-cell leukemia virus type I (HTLV-I) long terminal repeat (LTR), cell lines were generated from LTR-tax x LTR-beta-galactosidase (beta-Gal) doubly transgenic mouse fibroblastic tumors. The HTLV-I LTR directs expression of both the tax and lacZ genes, and Tax up-modulates both promoters in primary cells. However, once cells were transformed by tax, beta-Gal but not tax expression was suppressed. Supertransformation of these cells with v-src suppressed both beta-Gal and tax expression. This suppression was reversed by treatment with the tyrosine kinase inhibitor herbimycin A or protein kinase A inhibitor H8. Electrophoretic mobility shift assays demonstrated augmented binding in the R but not U3 region. This binding was competitively inhibited by a high-affinity CREB oligodeoxynucleotide and super-shifted with a specific CREB antibody. Treatment of cells with the cyclic AMP analog dibutyryl cyclic AMP also transiently increased the R region binding dramatically. In vitro DNase I footprint analysis identified a protein-binding sequence in the R region which corresponded with suppression. However, this target sequence lacked a conventional CREB-binding site. A 70.5-kDa DNA-binding protein was partially purified by affinity chromatography, along with a 49-kDa protein which reacted with CREB-specific sera. These data demonstrate that HTLV-I LTR suppression is associated with CREB factor binding in the R region, probably by direct interaction with a 70.5-kDa protein, and provide a novel mechanism for maintenance of viral latency.


1995 ◽  
Vol 219 (1) ◽  
pp. 122-129 ◽  
Author(s):  
Tetsuya Nosaka ◽  
Yukio Miyazaki ◽  
Tetsurou Takamatsu ◽  
Kouichi Sano ◽  
Masuyo Nakai ◽  
...  

1988 ◽  
Vol 16 (14) ◽  
pp. 6547-6566 ◽  
Author(s):  
Shoichiro Miyatake ◽  
Motoharu Seiki ◽  
Rene DeWaal Malefijt ◽  
Toshio Heike ◽  
Jun-ichi Fujisawa ◽  
...  

1996 ◽  
Vol 12 (18) ◽  
pp. 1717-1724 ◽  
Author(s):  
EDUARDO N. ESTEBAN ◽  
MICHAEL P. SHERMAN ◽  
BERNARD L. POIESZ ◽  
ROBERT R. MARSHAK ◽  
DAVID J. WATERS ◽  
...  

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