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Physical Chemistry Chemical Physics : PCCP
|
February 26, 2011
Nucleotide-driven conformational changes in the reverse gyrase helicase-like domain couple the nucleotide cycle to DNA processing
Yoandris del Toro Duany, Dagmar Klostermeier
Biological Chemistry
|
August 21, 2013
Differential contributions of the latch in Thermotoga maritima reverse gyrase to the binding of single-stranded DNA before and after ATP hydrolysis
Yoandris Del Toro Duany, Agneyo Ganguly, Dagmar Klostermeier
Journal of Molecular Biology
|
November 6, 2012
Reverse gyrase transiently unwinds double-stranded DNA in an ATP-dependent reaction
Agneyo Ganguly, Yoandris del Toro Duany, Dagmar Klostermeier
Current Opinion in Virology
|
February 14, 2015
MDA5-filament, dynamics and disease
Yoandris del Toro Duany, Bin Wu, Sun Hur
Biochemistry
|
June 2, 2011
The conformational flexibility of the helicase-like domain from Thermotoga maritima reverse gyrase is restricted by the topoisomerase domain
Yoandris del Toro Duany, Dagmar Klostermeier, Markus G Rudolph
Nucleic Acids Research
|
November 6, 2010
The latch modulates nucleotide and DNA binding to the helicase-like domain of Thermotoga maritima reverse gyrase and is required for positive DNA supercoiling
Agneyo Ganguly, Yoandris Del Toro Duany, Markus G Rudolph, et al.
Nucleic Acids Research
|
September 18, 2008
The reverse gyrase helicase-like domain is a nucleotide-dependent switch that is attenuated by the topoisomerase domain
Yoandris del Toro Duany, Stefan P Jungblut, Andreas S Schmidt, et al.
Nucleic Acids Research
|
December 5, 2012
Crystal structures of Thermotoga maritima reverse gyrase: inferences for the mechanism of positive DNA supercoiling
Markus G Rudolph, Yoandris del Toro Duany, Stefan P Jungblut, et al.
Mbio
|
October 8, 2015
Identification of a Natural Viral RNA Motif That Optimizes Sensing of Viral RNA by RIG-I
Jie Xu, Xiomara Mercado-López, Jennifer T Grier, et al.
Nature Genetics
|
April 2, 2014
Gain-of-function mutations in IFIH1 cause a spectrum of human disease phenotypes associated with upregulated type I interferon signaling
Gillian I Rice, Yoandris Del Toro Duany, Emma M Jenkinson, et al.
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of 1
Search research articles
Search
Showing results (1-10 of 10) with videos related to
Sort By:
Page
of 1
Physical Chemistry Chemical Physics : PCCP
|
February 26, 2011
Nucleotide-driven conformational changes in the reverse gyrase helicase-like domain couple the nucleotide cycle to DNA processing
Yoandris del Toro Duany, Dagmar Klostermeier
Biological Chemistry
|
August 21, 2013
Differential contributions of the latch in Thermotoga maritima reverse gyrase to the binding of single-stranded DNA before and after ATP hydrolysis
Yoandris Del Toro Duany, Agneyo Ganguly, Dagmar Klostermeier
Journal of Molecular Biology
|
November 6, 2012
Reverse gyrase transiently unwinds double-stranded DNA in an ATP-dependent reaction
Agneyo Ganguly, Yoandris del Toro Duany, Dagmar Klostermeier
Current Opinion in Virology
|
February 14, 2015
MDA5-filament, dynamics and disease
Yoandris del Toro Duany, Bin Wu, Sun Hur
Biochemistry
|
June 2, 2011
The conformational flexibility of the helicase-like domain from Thermotoga maritima reverse gyrase is restricted by the topoisomerase domain
Yoandris del Toro Duany, Dagmar Klostermeier, Markus G Rudolph
Nucleic Acids Research
|
November 6, 2010
The latch modulates nucleotide and DNA binding to the helicase-like domain of Thermotoga maritima reverse gyrase and is required for positive DNA supercoiling
Agneyo Ganguly, Yoandris Del Toro Duany, Markus G Rudolph, et al.
Nucleic Acids Research
|
September 18, 2008
The reverse gyrase helicase-like domain is a nucleotide-dependent switch that is attenuated by the topoisomerase domain
Yoandris del Toro Duany, Stefan P Jungblut, Andreas S Schmidt, et al.
Nucleic Acids Research
|
December 5, 2012
Crystal structures of Thermotoga maritima reverse gyrase: inferences for the mechanism of positive DNA supercoiling
Markus G Rudolph, Yoandris del Toro Duany, Stefan P Jungblut, et al.
Mbio
|
October 8, 2015
Identification of a Natural Viral RNA Motif That Optimizes Sensing of Viral RNA by RIG-I
Jie Xu, Xiomara Mercado-López, Jennifer T Grier, et al.
Nature Genetics
|
April 2, 2014
Gain-of-function mutations in IFIH1 cause a spectrum of human disease phenotypes associated with upregulated type I interferon signaling
Gillian I Rice, Yoandris Del Toro Duany, Emma M Jenkinson, et al.
Page
of 1