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Anton Kuzmenko

Showing results (1-10 of 13) with videos related to

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Nucleic Acids Research|May 23, 2019
Programmable DNA cleavage by Ago nucleases from mesophilic bacteria Clostridium butyricum and Limnothrix roseaAnton Kuzmenko, Denis Yudin, Sergei Ryazansky, et al.
Nucleic Acids Research|March 21, 2021
A programmable pAgo nuclease with universal guide and target specificity from the mesophilic bacterium Kurthia massiliensisEkaterina Kropocheva, Anton Kuzmenko, Alexei A Aravin, et al.
RNA Biology|February 5, 2020
Genome-wide DNA sampling by Ago nuclease from the cyanobacterium <i>Synechococcus elongatus</i>Anna Olina, Anton Kuzmenko, Maria Ninova, et al.
Biochimie|August 20, 2013
Mitochondrial translation initiation machinery: conservation and diversificationAnton Kuzmenko, Gemma C Atkinson, Sergey Levitskii, et al.
Scientific Reports|February 23, 2012
Single molecule tracking fluorescence microscopy in mitochondria reveals highly dynamic but confined movement of Tom40Anton Kuzmenko, Stoyan Tankov, Brian P English, et al.
BMC Evolutionary Biology|February 26, 2014
An evolutionary ratchet leading to loss of elongation factors in eukaryotesGemma C Atkinson, Anton Kuzmenko, Ivan Chicherin, et al.
International Journal of Molecular Sciences|December 7, 2018
Biological and Evolutionary Significance of Terminal Extensions of Mitochondrial Translation Initiation Factor 3Ksenia Derbikova, Anton Kuzmenko, Sergey Levitskii, et al.
Peerj|September 25, 2018
60S dynamic state of bacterial ribosome is fixed by yeast mitochondrial initiation factor 3Sergey Levitskii, Ksenia Derbikova, Maria V Baleva, et al.
Scientific Reports|January 6, 2016
Aim-less translation: loss of Saccharomyces cerevisiae mitochondrial translation initiation factor mIF3/Aim23 leads to unbalanced protein synthesisAnton Kuzmenko, Ksenia Derbikova, Roger Salvatori, et al.
Microbiology Spectrum|April 27, 2023
Bacterial Argonaute Proteins Aid Cell Division in the Presence of Topoisomerase Inhibitors in Escherichia coliAnna Olina, Aleksei Agapov, Denis Yudin, et al.
Pageof 2

Showing results (1-10 of 13) with videos related to

Sort By:
Pageof 2
Nucleic Acids Research|May 23, 2019
Programmable DNA cleavage by Ago nucleases from mesophilic bacteria Clostridium butyricum and Limnothrix roseaAnton Kuzmenko, Denis Yudin, Sergei Ryazansky, et al.
Nucleic Acids Research|March 21, 2021
A programmable pAgo nuclease with universal guide and target specificity from the mesophilic bacterium Kurthia massiliensisEkaterina Kropocheva, Anton Kuzmenko, Alexei A Aravin, et al.
RNA Biology|February 5, 2020
Genome-wide DNA sampling by Ago nuclease from the cyanobacterium <i>Synechococcus elongatus</i>Anna Olina, Anton Kuzmenko, Maria Ninova, et al.
Biochimie|August 20, 2013
Mitochondrial translation initiation machinery: conservation and diversificationAnton Kuzmenko, Gemma C Atkinson, Sergey Levitskii, et al.
Scientific Reports|February 23, 2012
Single molecule tracking fluorescence microscopy in mitochondria reveals highly dynamic but confined movement of Tom40Anton Kuzmenko, Stoyan Tankov, Brian P English, et al.
BMC Evolutionary Biology|February 26, 2014
An evolutionary ratchet leading to loss of elongation factors in eukaryotesGemma C Atkinson, Anton Kuzmenko, Ivan Chicherin, et al.
International Journal of Molecular Sciences|December 7, 2018
Biological and Evolutionary Significance of Terminal Extensions of Mitochondrial Translation Initiation Factor 3Ksenia Derbikova, Anton Kuzmenko, Sergey Levitskii, et al.
Peerj|September 25, 2018
60S dynamic state of bacterial ribosome is fixed by yeast mitochondrial initiation factor 3Sergey Levitskii, Ksenia Derbikova, Maria V Baleva, et al.
Scientific Reports|January 6, 2016
Aim-less translation: loss of Saccharomyces cerevisiae mitochondrial translation initiation factor mIF3/Aim23 leads to unbalanced protein synthesisAnton Kuzmenko, Ksenia Derbikova, Roger Salvatori, et al.
Microbiology Spectrum|April 27, 2023
Bacterial Argonaute Proteins Aid Cell Division in the Presence of Topoisomerase Inhibitors in Escherichia coliAnna Olina, Aleksei Agapov, Denis Yudin, et al.
Pageof 2