Center-Authored Papers
Filters: Author is Thyme, Summer B [Clear All Filters]
Exploitation of binding energy for catalysis and design.. Nature. 461(7268):1300-4. Abstract
.
2009.
Improved Modeling of Side-Chain-Base Interactions and Plasticity in Protein-DNA Interface Design.. Journal of molecular biology. 419(3-4):255-74. Abstract
.
2012.
Improved Modeling of Side-Chain-Base Interactions and Plasticity in Protein-DNA Interface Design.. Journal of molecular biology. 419(3-4):255-74. Abstract
.
2012.
Massively parallel determination and modeling of endonuclease substrate specificity.. Nucleic acids research. 42(22):13839-52. Abstract
.
2014.
Exploitation of binding energy for catalysis and design.. Nature. 461(7268):1300-4. Abstract
.
2009.
Exploitation of binding energy for catalysis and design.. Nature. 461(7268):1300-4. Abstract
.
2009.
Exploitation of binding energy for catalysis and design.. Nature. 461(7268):1300-4. Abstract
.
2009.
Exploitation of binding energy for catalysis and design.. Nature. 461(7268):1300-4. Abstract
.
2009.
Massively parallel determination and modeling of endonuclease substrate specificity.. Nucleic acids research. 42(22):13839-52. Abstract
.
2014.
Exploitation of binding energy for catalysis and design.. Nature. 461(7268):1300-4. Abstract
.
2009.
Exploitation of binding energy for catalysis and design.. Nature. 461(7268):1300-4. Abstract
.
2009.
Massively parallel determination and modeling of endonuclease substrate specificity.. Nucleic acids research. 42(22):13839-52. Abstract
.
2014.
Massively parallel determination and modeling of endonuclease substrate specificity.. Nucleic acids research. 42(22):13839-52. Abstract
.
2014.
Massively parallel determination and modeling of endonuclease substrate specificity.. Nucleic acids research. 42(22):13839-52. Abstract
.
2014.
Exploitation of binding energy for catalysis and design.. Nature. 461(7268):1300-4. Abstract
.
2009.
Massively parallel determination and modeling of endonuclease substrate specificity.. Nucleic acids research. 42(22):13839-52. Abstract
.
2014.
Exploitation of binding energy for catalysis and design.. Nature. 461(7268):1300-4. Abstract
.
2009.
Exploitation of binding energy for catalysis and design.. Nature. 461(7268):1300-4. Abstract
.
2009.
Massively parallel determination and modeling of endonuclease substrate specificity.. Nucleic acids research. 42(22):13839-52. Abstract
.
2014.
Exploitation of binding energy for catalysis and design.. Nature. 461(7268):1300-4. Abstract
.
2009.
Exploitation of binding energy for catalysis and design.. Nature. 461(7268):1300-4. Abstract
.
2009.
Improved Modeling of Side-Chain-Base Interactions and Plasticity in Protein-DNA Interface Design.. Journal of molecular biology. 419(3-4):255-74. Abstract
.
2012.
Exploitation of binding energy for catalysis and design.. Nature. 461(7268):1300-4. Abstract
.
2009.
Exploitation of binding energy for catalysis and design.. Nature. 461(7268):1300-4. Abstract
.
2009.
Massively parallel determination and modeling of endonuclease substrate specificity.. Nucleic acids research. 42(22):13839-52. Abstract
.
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