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Our Science – Paterson Website

Bruce M. Paterson, Ph.D.

Selected Publications

1)  Roberts BE, Paterson BM.
Efficient translation of tobacco mosaic virus RNA and rabbit globin 9S RNA in a cell-free system from commercial wheat germ.
Proc. Natl. Acad. Sci. U.S.A. 70: 2330-4, 1973.
[Journal]
2)  Paterson BM, Bishop JO.
Changes in the mRNA population of chick myoblasts during myogenesis in vitro.
Cell. 12: 751-65, 1977.
[Journal]
3)  Levi A, Eldridge JD, Paterson BM.
Molecular cloning of a gene sequence regulated by nerve growth factor.
Science. 229: 393-5, 1985.
[Journal]
4)  Misquitta L, Paterson BM.
Targeted disruption of gene function in Drosophila by RNA interference (RNA-i): a role for nautilus in embryonic somatic muscle formation.
Proc. Natl. Acad. Sci. U.S.A. 96: 1451-6, 1999.
[Journal]
5)  Wei Q, Rong Y, Paterson BM.
Stereotypic founder cell patterning and embryonic muscle formation in Drosophila require nautilus (MyoD) gene function.
Proc. Natl. Acad. Sci. U.S.A. 104: 5461-6, 2007.
[Journal]
6)  Lipardi C, Paterson BM.
Identification of an RNA-dependent RNA polymerase in Drosophila establishes a common theme in RNA silencing.
Fly (Austin). 4: 30-5, 2010.
[Journal]
7)  Lipardi C, Paterson BM.
Identification of an RNA-dependent RNA polymerase in Drosophila involved in RNAi and transposon suppression.
Proc. Nat. Acad. Sci. USA. 106: 15645-15650, 2009.
[Journal]
8)  Manceau M, Gros J, Savage K, Thome V, McPherron A, Paterson B, Marcelle C.
Myostatin promotes the terminal differentiation of embryonic muscle progenitors.
Genes Dev. 22: 668-81, 2008.
[Journal]
9)  Lipardi C, Baek HJ, Wei Q, Paterson BM.
Analysis of short interfering RNA function in RNA interference by using Drosophila embryo extracts and schneider cells.
Methods Enzymol. 392: 351-71, 2005.
[Journal]
10)  Paterson B.
Engelke D, eds.
Application and analysis of RNAi in Drosophila systems. In: Nuts and Bolts of RNAi Technology.
Eagleville: DNA Press; 2003. p. 53-68 [Book Chapter]
11)  Wei Q, Lipardi C, Paterson BM.
Analysis of the 3(')-hydroxyl group in Drosophila siRNA function.
Methods. 30: 337-47, 2003.
[Journal]
12)  Lipardi C, Wei Q, Paterson B.
RNA silencing in Drosophila.
Acta Histochem. Cytochem. 36: 123-134, 2003.
[Journal]
13)  Kwon SY, Badenhorst P, Martin-Romero FJ, Carlson BA, Paterson BM, Gladyshev VN, Lee BJ, Hatfield DL.
The Drosophila selenoprotein BthD is required for survival and has a role in salivary gland development.
Mol. Cell. Biol. 23: 8495-504, 2003.
[Journal]
14)  Lipardi C, Wei Q, Paterson BM.
RNAi as random degradative PCR: siRNA primers convert mRNA into dsRNAs that are degraded to generate new siRNAs.
Cell. 107: 297-307, 2001.
[Journal]
15)  Wei Q, Marchler G, Edington K, Karsch-Mizrachi I, Paterson BM.
RNA interference demonstrates a role for nautilus in the myogenic conversion of Schneider cells by daughterless.
Dev. Biol. 228: 239-55, 2000.
[Journal]
16)  Zhang JM, Wei Q, Zhao X, Paterson BM.
Coupling of the cell cycle and myogenesis through the cyclin D1-dependent interaction of MyoD with cdk4.
EMBO J. 18: 926-33, 1999.
[Journal]
17)  Zhang JM, Chen L, Krause M, Fire A, Paterson BM.
Evolutionary conservation of MyoD function and differential utilization of E proteins.
Dev. Biol. 208: 465-72, 1999.
[Journal]
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This page was last updated on 6/17/2014.