RNA polymerase III

Results: 15



#Item
1GenCrispr Cas9-C-NLS Nuclease Cat. No. Z03385 I II III

GenCrispr Cas9-C-NLS Nuclease Cat. No. Z03385 I II III

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Source URL: www.genscript.com

Language: English - Date: 2016-05-09 04:08:37
2MECHANISMS OF RNA POLYMERASE III TRANSCRIPTION IN HUMAN CELLS Nouria Hernandez If DNA is often referred to as the molecule of life, then gene expression, which leads, ultimately, to execution of the instructions embedded

MECHANISMS OF RNA POLYMERASE III TRANSCRIPTION IN HUMAN CELLS Nouria Hernandez If DNA is often referred to as the molecule of life, then gene expression, which leads, ultimately, to execution of the instructions embedded

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Source URL: www.cloetta-foundation.ch

Language: English - Date: 2012-07-04 12:45:37
    3Open access, freely available online  PLoS BIOLOGY The Program of Gene Transcription for a Single Differentiating Cell Type

    Open access, freely available online PLoS BIOLOGY The Program of Gene Transcription for a Single Differentiating Cell Type

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    Source URL: www-stat.wharton.upenn.edu

    Language: English - Date: 2006-07-24 16:11:35
    4A PCR-based strategy for cloning short hairpin sequences: “PCR SHAGging”. Our overall approach is to use an RNA polymerase III promoter to drive expression of encoded short hairpin RNA (shRNA). For this purpose we us

    A PCR-based strategy for cloning short hairpin sequences: “PCR SHAGging”. Our overall approach is to use an RNA polymerase III promoter to drive expression of encoded short hairpin RNA (shRNA). For this purpose we us

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    Source URL: hannonlab.cshl.edu

    Language: English - Date: 2008-06-12 19:01:47
      51  The influence of promoter architectures and regulatory motifs on gene expression in Escherichia coli Mattias Rydenfelt 1,2 , Hernan G. Garcia 3 , Robert Sidney Cox III 4 , and Rob Phillips5,6∗ 1 Department of Physic

      1 The influence of promoter architectures and regulatory motifs on gene expression in Escherichia coli Mattias Rydenfelt 1,2 , Hernan G. Garcia 3 , Robert Sidney Cox III 4 , and Rob Phillips5,6∗ 1 Department of Physic

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      Source URL: www.rpgroup.caltech.edu

      Language: English - Date: 2014-12-05 16:30:25
      6Journal of Cell Science 109, [removed]Printed in Great Britain © The Company of Biologists Limited 1996 JCS4090 535

      Journal of Cell Science 109, [removed]Printed in Great Britain © The Company of Biologists Limited 1996 JCS4090 535

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      Source URL: jcs.biologists.org

      Language: English - Date: 2001-05-03 14:24:41
      7Proc. Natl. Acad. Sci. USA Vol. 95, pp[removed]–12895, October 1998 Biochemistry Inhibition of RNA polymerase II transcription in human cells by synthetic DNA-binding ligands

      Proc. Natl. Acad. Sci. USA Vol. 95, pp[removed]–12895, October 1998 Biochemistry Inhibition of RNA polymerase II transcription in human cells by synthetic DNA-binding ligands

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      Source URL: authors.library.caltech.edu

      Language: English - Date: 2012-12-26 03:44:57
      8Conservation between the RNA Polymerase I, II, and III Transcription Initiation Machineries

      Conservation between the RNA Polymerase I, II, and III Transcription Initiation Machineries

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      Source URL: chemistry.caltech.edu

      Language: English - Date: 2014-11-13 20:17:15
      9Cell, Vol. 85, 115–124, April 5, 1996, Copyright 1996 by Cell Press  RNase III Cleaves Eukaryotic Preribosomal RNA at a U3 snoRNP-Dependent Site Sherif Abou Elela, Haller Igel, and Manuel Ares, Jr.

      Cell, Vol. 85, 115–124, April 5, 1996, Copyright 1996 by Cell Press RNase III Cleaves Eukaryotic Preribosomal RNA at a U3 snoRNP-Dependent Site Sherif Abou Elela, Haller Igel, and Manuel Ares, Jr.

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      Source URL: ribonode.ucsc.edu

      Language: English - Date: 2003-10-12 17:49:40
      10Acknowledgements M. Azubel D. Bushnell G. Calero R. Davis A. Ehrensberger

      Acknowledgements M. Azubel D. Bushnell G. Calero R. Davis A. Ehrensberger

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      Source URL: www.nobelprize.org

      Language: English - Date: 2007-11-22 04:45:23