TY - JOUR
T1 - Role of a heterologous retroviral transport element in the development of genetic complementation assay for mouse mammary tumor virus (MMTV) replication
AU - Rizvi, Tahir A.
AU - Ali, Jahabar
AU - Phillip, Pretty Susan
AU - Ghazawi, Akela
AU - Jayanth, Preethi
AU - Mustafa, Farah
N1 - Funding Information:
This work was supported by a grant from the Research Affairs at the United Arab Emirates University under a contract no. 02-10-8-11/06. We express our thanks to Dr. Didier Trono (Ecole Polytechnique Fédérale de Lausanne, Switzerland) for providing MD.G., Dr. Jaquelin Dudley (University of Texas at Austin, Austin, TX) for providing MMTV antibodies and HYB MTV molecular clone and Mr. Allen Shahin (United Arab Emirates University, Al Ain, UAE) for help in performing the FACS analysis . We would also like to thank Ms. Soumeya Jaballah, Ms. Suraiya Jahan Aktar, Ms. Elizabeth Beebi, and Ms. Noura Al Dhaheri (United Arab Emirates University, Al Ain, UAE) for stimulating discussions and critical reading of the manuscript. The authors also wish to thank Ms. Dhuha Al Ameri, Farah Al Ali, Noor Al Sari, and Ms. Sara Al Suwaidi for their assistance in cloning the vectors as a part of their curricular research program.
PY - 2009/3/15
Y1 - 2009/3/15
N2 - The mouse mammary tumor virus (MMTV) is a type B retrovirus that is unique from other retroviruses in having multiple "tissue specific" and "hormone inducible" promoters. This unique feature has lead to the increasing interest in studying the biology of MMTV replication with the ultimate goal of developing MMTV based vectors for potentially targeted human gene therapy. In this report, we describe, for the first time, the establishment of an in vivo genetic complementation assay to study various aspects of MMTV replication. In the assay described here, the function of MMTV Rem/RmRE regulatory pathway has been successfully substituted by a heterologous retroviral constitutive transport element (CTE) from Mason Pfizer Monkey Virus (MPMV) for mature MMTV particle production. Our results revealed that in the absence of MPMV CTE or Rem/RmRE, RNA transcribed from MMTV Gag-Pol expression plasmids were efficiently transported to the cytoplasm. However, the presence of CTE was indispensable for Gag-Pol protein expression. In addition, we report the development of MMTV based vectors in which the packageable RNA was transcribed either from MMTV LTR or from a chimeric LTR, which could successfully be packaged and propagated by particles produced from MMTV Gag-Pol expression plasmids containing a heterologous transport element. The role of MPMV CTE in the transport of MMTV transfer vector RNA was not found to be significant. Development of such an assay should not only shed light on how MMTV regulates its gene expression, but also should provide additional molecular tools for delineating the packaging determinants for MMTV, which is imperative for the development of novel vectors for targeted and inducible gene therapy.
AB - The mouse mammary tumor virus (MMTV) is a type B retrovirus that is unique from other retroviruses in having multiple "tissue specific" and "hormone inducible" promoters. This unique feature has lead to the increasing interest in studying the biology of MMTV replication with the ultimate goal of developing MMTV based vectors for potentially targeted human gene therapy. In this report, we describe, for the first time, the establishment of an in vivo genetic complementation assay to study various aspects of MMTV replication. In the assay described here, the function of MMTV Rem/RmRE regulatory pathway has been successfully substituted by a heterologous retroviral constitutive transport element (CTE) from Mason Pfizer Monkey Virus (MPMV) for mature MMTV particle production. Our results revealed that in the absence of MPMV CTE or Rem/RmRE, RNA transcribed from MMTV Gag-Pol expression plasmids were efficiently transported to the cytoplasm. However, the presence of CTE was indispensable for Gag-Pol protein expression. In addition, we report the development of MMTV based vectors in which the packageable RNA was transcribed either from MMTV LTR or from a chimeric LTR, which could successfully be packaged and propagated by particles produced from MMTV Gag-Pol expression plasmids containing a heterologous transport element. The role of MPMV CTE in the transport of MMTV transfer vector RNA was not found to be significant. Development of such an assay should not only shed light on how MMTV regulates its gene expression, but also should provide additional molecular tools for delineating the packaging determinants for MMTV, which is imperative for the development of novel vectors for targeted and inducible gene therapy.
KW - Constitutive transport element (CTE)
KW - Human gene therapy
KW - Mouse mammary tumor virus (MMTV)
KW - RNA packaging
KW - Regulation of gene expression
KW - Retroviral vectors
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U2 - 10.1016/j.virol.2008.12.027
DO - 10.1016/j.virol.2008.12.027
M3 - Article
C2 - 19157480
AN - SCOPUS:60649118911
SN - 0042-6822
VL - 385
SP - 464
EP - 472
JO - Virology
JF - Virology
IS - 2
ER -