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Rice, Phoebe A.
One or more keywords matched the following properties of
Rice, Phoebe A.
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overview
How do mobile genetic elements jump? We use biochemistry, structural biology, and microbiology to get mechanistic answers. Projects include the SCCmec element of MRSA and the paradigmatic Mu transposase.
One or more keywords matched the following items that are connected to
Rice, Phoebe A.
Item Type
Name
Concept
Computational Biology
Academic Article
Structural plasticity of the Flp-Holliday junction complex.
Academic Article
Structural basis for catalytic activation of a serine recombinase.
Academic Article
Structure of the bacteriophage Mu transposase core: a common structural motif for DNA transposition and retroviral integration.
Academic Article
The role of the conserved Trp330 in Flp-mediated recombination. Functional and structural analysis.
Academic Article
A helix-turn-strand structural motif common in alpha-beta proteins.
Academic Article
Structural basis of asymmetry in the human immunodeficiency virus type 1 reverse transcriptase heterodimer.
Academic Article
Mobile genetic elements: in silico, in vitro, in vivo.
Academic Article
A conserved RNA structural motif for organizing topology within picornaviral internal ribosome entry sites.
Academic Article
Target highlights in CASP13: Experimental target structures through the eyes of their authors.
Academic Article
Structural basis for topological regulation of Tn3 resolvase.
Search Criteria
Structural
Biology