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The Journal of Biological Chemistry
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August 21, 2002
Major conformational changes occur during the transition from an initiation complex to an elongation complex by T7 RNA polymerase
Kaiyu Ma, Dmitri Temiakov, Manli Jiang, et al.
Nucleic Acids Research
|
February 22, 2022
Mechanisms of mitochondrial promoter recognition in humans and other mammalian species
Angelica Zamudio-Ochoa, Yaroslav I Morozov, Azadeh Sarfallah, et al.
Molecular Cell
|
October 21, 2006
A mechanism of nucleotide misincorporation during transcription due to template-strand misalignment
Richard T Pomerantz, Dmitry Temiakov, Michael Anikin, et al.
Cell
|
March 16, 2004
Structural basis for substrate selection by t7 RNA polymerase
Dmitry Temiakov, Vsevolod Patlan, Michael Anikin, et al.
Nucleic Acids Research
|
August 18, 2006
Elongation complexes of Thermus thermophilus RNA polymerase that possess distinct translocation conformations
Ekaterina Kashkina, Michael Anikin, Tahir H Tahirov, et al.
Acta Crystallographica. Section D, Biological Crystallography
|
December 25, 2002
Crystallization and preliminary crystallographic analysis of T7 RNA polymerase elongation complex
Dmitry Temiakov, Tahir H Tahirov, Michael Anikin, et al.
Nucleic Acids Research
|
January 8, 2014
A novel intermediate in transcription initiation by human mitochondrial RNA polymerase
Yaroslav I Morozov, Karen Agaronyan, Alan C M Cheung, et al.
The Journal of Biological Chemistry
|
March 27, 2019
Yeast mitochondrial protein Pet111p binds directly to two distinct targets in <i>COX2</i> mRNA, suggesting a mechanism of translational activation
Julia L Jones, Katharina B Hofmann, Andrew T Cowan, et al.
Molecular Cell
|
October 21, 2006
Template misalignment in multisubunit RNA polymerases and transcription fidelity
Ekaterina Kashkina, Michael Anikin, Florian Brueckner, et al.
Nature
|
November 8, 2002
Structure of a T7 RNA polymerase elongation complex at 2.9 A resolution
Tahir H Tahirov, Dmitry Temiakov, Michael Anikin, et al.
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Search research articles
Search
Showing results (11-20 of 29) with videos related to
Sort By:
Page
of 3
The Journal of Biological Chemistry
|
August 21, 2002
Major conformational changes occur during the transition from an initiation complex to an elongation complex by T7 RNA polymerase
Kaiyu Ma, Dmitri Temiakov, Manli Jiang, et al.
Nucleic Acids Research
|
February 22, 2022
Mechanisms of mitochondrial promoter recognition in humans and other mammalian species
Angelica Zamudio-Ochoa, Yaroslav I Morozov, Azadeh Sarfallah, et al.
Molecular Cell
|
October 21, 2006
A mechanism of nucleotide misincorporation during transcription due to template-strand misalignment
Richard T Pomerantz, Dmitry Temiakov, Michael Anikin, et al.
Cell
|
March 16, 2004
Structural basis for substrate selection by t7 RNA polymerase
Dmitry Temiakov, Vsevolod Patlan, Michael Anikin, et al.
Nucleic Acids Research
|
August 18, 2006
Elongation complexes of Thermus thermophilus RNA polymerase that possess distinct translocation conformations
Ekaterina Kashkina, Michael Anikin, Tahir H Tahirov, et al.
Acta Crystallographica. Section D, Biological Crystallography
|
December 25, 2002
Crystallization and preliminary crystallographic analysis of T7 RNA polymerase elongation complex
Dmitry Temiakov, Tahir H Tahirov, Michael Anikin, et al.
Nucleic Acids Research
|
January 8, 2014
A novel intermediate in transcription initiation by human mitochondrial RNA polymerase
Yaroslav I Morozov, Karen Agaronyan, Alan C M Cheung, et al.
The Journal of Biological Chemistry
|
March 27, 2019
Yeast mitochondrial protein Pet111p binds directly to two distinct targets in <i>COX2</i> mRNA, suggesting a mechanism of translational activation
Julia L Jones, Katharina B Hofmann, Andrew T Cowan, et al.
Molecular Cell
|
October 21, 2006
Template misalignment in multisubunit RNA polymerases and transcription fidelity
Ekaterina Kashkina, Michael Anikin, Florian Brueckner, et al.
Nature
|
November 8, 2002
Structure of a T7 RNA polymerase elongation complex at 2.9 A resolution
Tahir H Tahirov, Dmitry Temiakov, Michael Anikin, et al.
Page
of 3