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Biomedical subjects

Christopher D Lima

Publications and source records attributed to Christopher D Lima.

40 records · Page 3Linked to original sources

Bridging the gap between SCF and ubiquitin transfer.

The first crystal structure of a core SCF complex has been determined to 3.2 A. Together with previous data obtained for RING E3-E2 and Skp1-Skp2 adaptor complexes, the structure provides substantial insight into SCF-mediated protein modification by ubiquitin, a process that regulates protein modification and degradation in systems ranging from cell cycle progression to transcription.

Binding Sites↗

Structural and biochemical analysis of the Obg GTP binding protein.

The Obg nucleotide binding protein family has been implicated in stress response, chromosome partitioning, replication initiation, mycelium development, and sporulation. Obg proteins are among a large group of GTP binding proteins conserved from bacteria to man. Members of the family contain two equally and highly conserved domains, a C-terminal GTP binding domain and an N-terminal glycine-rich domain. Structural analysis of Bacillus subtilis Obg revealed respective domain architectures and how they are coupled through the putative switch elements of the C-terminal GTPase domain in apo and nucleotide-bound configurations. Biochemical analysis of bacterial and human Obg proteins combined with the structural observation of the ppGpp nucleotide within the Obg active sight suggest a potential role for ppGpp modulation of Obg function in B. subtilis.

Amino Acid Sequence↗

Structural analysis of Saccharomyces cerevisiae myo-inositol phosphate synthase.

The New York Structural Genomics Research Consortium has targeted highly conserved but uncharacterized enzyme families for structure determination. As part of this effort, the 2.65-A crystal structure has been determined for Saccharomyces cerevisiae myo-inositol 1-phosphate synthase (MIP), an essential enzyme that catalyzes critical steps in inositol biosynthesis. The structure determination of four independent monomers in the asymmetric unit (240 kDa) reveals atomic details and residue composition for the partially closed NAD-containing active sites in apo-configuration. The structure further reveals extensive interactions involved in tetrameric assembly of the enzyme complex.

Binding Sites↗