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Items: 1 to 20 of 170

1.

Identification of multiple cyclin subunits of human P-TEFb.

Peng J, Zhu Y, Milton JT, Price DH.

Genes Dev. 1998 Mar 1;12(5):755-62.

2.

Identification of a cyclin subunit required for the function of Drosophila P-TEFb.

Peng J, Marshall NF, Price DH.

J Biol Chem. 1998 May 29;273(22):13855-60.

3.
4.

MAQ1 and 7SK RNA interact with CDK9/cyclin T complexes in a transcription-dependent manner.

Michels AA, Nguyen VT, Fraldi A, Labas V, Edwards M, Bonnet F, Lania L, Bensaude O.

Mol Cell Biol. 2003 Jul;23(14):4859-69. Erratum in: Mol Cell Biol. 2003 Dec;23(24):9405.

5.

CDK9 autophosphorylation regulates high-affinity binding of the human immunodeficiency virus type 1 tat-P-TEFb complex to TAR RNA.

Garber ME, Mayall TP, Suess EM, Meisenhelder J, Thompson NE, Jones KA.

Mol Cell Biol. 2000 Sep;20(18):6958-69.

7.
8.

7SK small nuclear RNA binds to and inhibits the activity of CDK9/cyclin T complexes.

Nguyen VT, Kiss T, Michels AA, Bensaude O.

Nature. 2001 Nov 15;414(6861):322-5.

PMID:
11713533
9.

Transcriptional activity of positive transcription elongation factor b kinase in vivo requires the C-terminal domain of RNA polymerase II.

Napolitano G, Majello B, Licciardo P, Giordano A, Lania L.

Gene. 2000 Aug 22;254(1-2):139-45.

PMID:
10974544
10.

The growth factor granulin interacts with cyclin T1 and modulates P-TEFb-dependent transcription.

Hoque M, Young TM, Lee CG, Serrero G, Mathews MB, Pe'ery T.

Mol Cell Biol. 2003 Mar;23(5):1688-702.

12.

Catalytic activity of Cdk9 is required for nuclear co-localization of the Cdk9/cyclin T1 (P-TEFb) complex.

Napolitano G, Majello B, Lania L.

J Cell Physiol. 2003 Oct;197(1):1-7.

PMID:
12942536
13.

Cyclin K functions as a CDK9 regulatory subunit and participates in RNA polymerase II transcription.

Fu TJ, Peng J, Lee G, Price DH, Flores O.

J Biol Chem. 1999 Dec 3;274(49):34527-30.

14.
15.

P-TEFb kinase recruitment and function at heat shock loci.

Lis JT, Mason P, Peng J, Price DH, Werner J.

Genes Dev. 2000 Apr 1;14(7):792-803.

16.

Identification of a novel isoform of Cdk9.

Shore SM, Byers SA, Maury W, Price DH.

Gene. 2003 Mar 27;307:175-82.

PMID:
12706900
17.
18.

P-TEFb containing cyclin K and Cdk9 can activate transcription via RNA.

Lin X, Taube R, Fujinaga K, Peterlin BM.

J Biol Chem. 2002 May 10;277(19):16873-8. Epub 2002 Mar 7.

20.

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