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Current Pharmaceutical Design
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February 26, 2013
SNAP display - an in vitro method for the selection of protein binders
Gillian Houlihan, David Lowe, Florian Hollfelder
Accounts of Chemical Research
|
April 7, 2017
Exploring the Chemistry of Genetic Information Storage and Propagation through Polymerase Engineering
Gillian Houlihan, Sebastian Arangundy-Franklin, Philipp Holliger
Current Opinion in Biotechnology
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June 12, 2017
Engineering and application of polymerases for synthetic genetics
Gillian Houlihan, Sebastian Arangundy-Franklin, Philipp Holliger
Cold Spring Harbor Perspectives in Biology
|
June 5, 2019
Beyond DNA and RNA: The Expanding Toolbox of Synthetic Genetics
Alexander I Taylor, Gillian Houlihan, Philipp Holliger
Protein Engineering, Design & Selection : PEDS
|
July 3, 2015
Directed evolution of anti-HER2 DARPins by SNAP display reveals stability/function trade-offs in the selection process
Gillian Houlihan, Pietro Gatti-Lafranconi, David Lowe, et al.
Journal of Immunological Methods
|
January 25, 2014
An experimental framework for improved selection of binding proteins using SNAP display
Gillian Houlihan, Pietro Gatti-Lafranconi, Miriam Kaltenbach, et al.
Angewandte Chemie (International Ed. in English)
|
November 4, 2015
Enzymatic Synthesis of Nucleic Acids with Defined Regioisomeric 2'-5' Linkages
Christopher Cozens, Hannes Mutschler, Geoffrey M Nelson, et al.
Nature Chemistry
|
July 22, 2020
Discovery and evolution of RNA and XNA reverse transcriptase function and fidelity
Gillian Houlihan, Sebastian Arangundy-Franklin, Benjamin T Porebski, et al.
RSC Chemical Biology
|
November 2, 2022
Efficient synthesis and replication of diverse sequence libraries composed of biostable nucleic acid analogues
John R D Hervey, Niklas Freund, Gillian Houlihan, et al.
Elife
|
November 22, 2018
Random-sequence genetic oligomer pools display an innate potential for ligation and recombination
Hannes Mutschler, Alexander I Taylor, Benjamin T Porebski, et al.
Page
of 2
Search research articles
Search
Showing results (1-10 of 11) with videos related to
Sort By:
Page
of 2
Current Pharmaceutical Design
|
February 26, 2013
SNAP display - an in vitro method for the selection of protein binders
Gillian Houlihan, David Lowe, Florian Hollfelder
Accounts of Chemical Research
|
April 7, 2017
Exploring the Chemistry of Genetic Information Storage and Propagation through Polymerase Engineering
Gillian Houlihan, Sebastian Arangundy-Franklin, Philipp Holliger
Current Opinion in Biotechnology
|
June 12, 2017
Engineering and application of polymerases for synthetic genetics
Gillian Houlihan, Sebastian Arangundy-Franklin, Philipp Holliger
Cold Spring Harbor Perspectives in Biology
|
June 5, 2019
Beyond DNA and RNA: The Expanding Toolbox of Synthetic Genetics
Alexander I Taylor, Gillian Houlihan, Philipp Holliger
Protein Engineering, Design & Selection : PEDS
|
July 3, 2015
Directed evolution of anti-HER2 DARPins by SNAP display reveals stability/function trade-offs in the selection process
Gillian Houlihan, Pietro Gatti-Lafranconi, David Lowe, et al.
Journal of Immunological Methods
|
January 25, 2014
An experimental framework for improved selection of binding proteins using SNAP display
Gillian Houlihan, Pietro Gatti-Lafranconi, Miriam Kaltenbach, et al.
Angewandte Chemie (International Ed. in English)
|
November 4, 2015
Enzymatic Synthesis of Nucleic Acids with Defined Regioisomeric 2'-5' Linkages
Christopher Cozens, Hannes Mutschler, Geoffrey M Nelson, et al.
Nature Chemistry
|
July 22, 2020
Discovery and evolution of RNA and XNA reverse transcriptase function and fidelity
Gillian Houlihan, Sebastian Arangundy-Franklin, Benjamin T Porebski, et al.
RSC Chemical Biology
|
November 2, 2022
Efficient synthesis and replication of diverse sequence libraries composed of biostable nucleic acid analogues
John R D Hervey, Niklas Freund, Gillian Houlihan, et al.
Elife
|
November 22, 2018
Random-sequence genetic oligomer pools display an innate potential for ligation and recombination
Hannes Mutschler, Alexander I Taylor, Benjamin T Porebski, et al.
Page
of 2