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Journal of Virology, November 2001, p. 10132-10138, Vol. 75, No. 21
Abteilung Physikalische Biochemie,
Max-Planck-Institut für Molekulare Physiologie, 44227 Dortmund,
Germany
Received 19 March 2001/Accepted 2 August 2001
We have examined the specific minus-strand transfer reactions that
occur after the synthesis of minus strong-stop DNA and nonspecific
strand switching on homopolymeric poly(rA) templates with different
types of Rous sarcoma virus (RSV) reverse transcriptases. Three
different types of reverse transcriptases can be isolated from virions
of RSV: heterodimeric
0022-538X/01/$04.00+0 DOI: 10.1128/JVI.75.21.10132-10138.2001
Copyright © 2001, American Society for Microbiology. All rights reserved.
Requirements for Minus-Strand Transfer Catalyzed by
Rous Sarcoma Virus Reverse Transcriptase

and homodimeric
and
. The mechanism
of minus-strand transfer was examined using a model primer-template
substrate corresponding to the 5'- and 3'-terminal RNA regions of the
RSV genome. The results reveal that the RNase H activity of RSV reverse
transcriptases is required for minus-strand transfer. Less than 2% of
strand transfer of the extended product is detectable with RNase
H-deficient enzymes. We could show that the
homodimer lacking the
integrase domain can perform strand transfer almost as efficiently as
the 
and
Pol heterodimers. In contrast, the activities of
and Pol for minus-strand transfer are reduced. Furthermore, a two- to
fivefold increase in minus-strand transfer activities was observed in
the presence of human immunodeficiency virus type 1 nucleocapsid protein.
*
Corresponding author. Mailing address:
Max-Planck-Institut für Molekulare Physiologie, Abteilung
Physikalische Biochemie, Otto-Hahn-Strasse 11, 44227 Dortmund, Germany.
Phone: 49 231 133 2312. Fax: 49 231 133 2399. E-mail:
birgit.woehrl{at}mpi-dortmund.mpg.de.
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