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Full-Text Articles in Medicine and Health Sciences

In Vivo Construction Of Recombinant Molecules Within The Caenorhabditis Elegans Germ Line Using Short Regions Of Terminal Homology, Benedict J. Kemp, Julia Hatzold, Laura A. Sternick, Joshua Cornman-Homonoff, Jessica M. Whitaker, Pamela J. Tieu, Eric J. Lambie Sep 2007

In Vivo Construction Of Recombinant Molecules Within The Caenorhabditis Elegans Germ Line Using Short Regions Of Terminal Homology, Benedict J. Kemp, Julia Hatzold, Laura A. Sternick, Joshua Cornman-Homonoff, Jessica M. Whitaker, Pamela J. Tieu, Eric J. Lambie

Dartmouth Scholarship

Homologous recombination provides a means for the in vivoconstruction of recombinant DNA molecules that may be problematic to assemble in vitro . We have investigated the efficiency of recombination within the Caenorhabditis elegans germ line as a function of the length of homology between recombining molecules. Our findings indicate that recombination can occur between molecules that share only 10 bp of terminal homology, and that 25 bp is sufficient to mediate relatively high levels of recombination. Recombination occurs with lower efficiency when the location of the homologous segment is subterminal or internal. As in yeast, recombination can also be …


Crystal Structure Of The Vibrio Cholerae Quorum-Sensing Regulatory Protein Hapr, Rukman S. De Silva, Gabriela Kovacikova, Wei Lin, Ronald K. Taylor, Karen Skorupski, F. Jon Kull May 2007

Crystal Structure Of The Vibrio Cholerae Quorum-Sensing Regulatory Protein Hapr, Rukman S. De Silva, Gabriela Kovacikova, Wei Lin, Ronald K. Taylor, Karen Skorupski, F. Jon Kull

Dartmouth Scholarship

Quorum sensing in Vibrio cholerae involves signaling between two-component sensor protein kinases and the response regulator LuxO to control the expression of the master regulator HapR. HapR, in turn, plays a central role in regulating a number of important processes, such as virulence gene expression and biofilm formation. We have determined the crystal structure of HapR to 2.2-Å resolution. Its structure reveals a dimeric, two-domain molecule with an all-helical structure that is strongly conserved with members of the TetR family of transcriptional regulators. The N-terminal DNA-binding domain contains a helix-turn-helix DNA-binding motif and alteration of certain residues in this domain …


Scope: A Web Server For Practical De Novo Motif Discovery, Jonathan M. Carlson, Arijit Chakravarty, Charles E. Deziel, Robert H. Gross Apr 2007

Scope: A Web Server For Practical De Novo Motif Discovery, Jonathan M. Carlson, Arijit Chakravarty, Charles E. Deziel, Robert H. Gross

Dartmouth Scholarship

SCOPE is a novel parameter-free method for the de novoidentification of potential regulatory motifs in sets of coordinately regulated genes. The SCOPE algorithm combines the output of three component algorithms, each designed to identify a particular class of motifs. Using an ensemble learning approach, SCOPE identifies the best candidate motifs from its component algorithms. In tests on experimentally determined datasets, SCOPE identified motifs with a significantly higher level of accuracy than a number of other web-based motif finders run with their default parameters. Because SCOPE has no adjustable parameters, the web server has an intuitive interface, requiring only a …


The Myc Transactivation Domain Promotes Global Phosphorylation Of The Rna Polymerase Ii Carboxy-Terminal Domain Independently Of Direct Dna Binding, Victoria H. Cowling, Michael D. Cole Jan 2007

The Myc Transactivation Domain Promotes Global Phosphorylation Of The Rna Polymerase Ii Carboxy-Terminal Domain Independently Of Direct Dna Binding, Victoria H. Cowling, Michael D. Cole

Dartmouth Scholarship

Myc is a transcription factor which is dependent on its DNA binding domain for transcriptional regulation of target genes. Here, we report the surprising finding that Myc mutants devoid of direct DNA binding activity and Myc target gene regulation can rescue a substantial fraction of the growth defect in myc−/− fibroblasts. Expression of the Myc transactivation domain alone induces a transcription-independent elevation of the RNA polymerase II (Pol II) C-terminal domain (CTD) kinases cyclin-dependent kinase 7 (CDK7) and CDK9 and a global increase in CTD phosphorylation. The Myc transactivation domain binds to the transcription initiation sites of these promoters …