Zobrazeno 1 - 10
of 168
pro vyhledávání: '"Charles M. Radding"'
Publikováno v:
Proceedings of the National Academy of Sciences. 101:17056-17060
Studies of phage λ in vivo have indicated that its own recombination enzymes, β protein and λ exonuclease, are capable of catalyzing two dissimilar pathways of homologous recombination that are widely distributed in nature: single-strand annealing
Autor:
Karen S. Anderson, Charles M. Radding, Shawn M. O'Malley, Ewa Folta-Stogniew, Ravindra C. Gupta
Publikováno v:
Molecular Cell. 15(6):965-975
The unresolved mechanism by which a single strand of DNA recognizes homology in duplex DNA is central to understanding genetic recombination and repair of double-strand breaks. Using stopped-flow fluorescence we monitored strand exchange catalyzed by
Publikováno v:
Proceedings of the National Academy of Sciences. 101:9568-9572
Studies of rad52 mutants in Saccharomyces cerevisiae have revealed a critical role of Rad52 protein in double-strand break repair and meiosis, and roles in both RAD51 -dependent and -independent pathways of recombination. In vitro , both yeast and hu
Autor:
Charles M. Radding
Publikováno v:
Law and History Review. 21:377-382
As I understand it, Susan Reynolds's article is meant to address the longstanding habit among legal historians of equating professional approaches to the law with the emergence of a school-based study of Roman law. In the course of the twelfth centur
Publikováno v:
Proceedings of the National Academy of Sciences. 98:8433-8439
Human Dmc1 protein, a meiosis-specific homolog of Escherichia coli RecA protein, has previously been shown to promote DNA homologous pairing and strand-exchange reactions that are qualitatively similar to those of RecA protein and Rad51. Human and ye
IX. The Corpus Iuris Civilis in the Middle Ages: A case study in historiography and medieval history
Autor:
Antonio Ciaralli, Charles M. Radding
Publikováno v:
Zeitschrift der Savigny-Stiftung für Rechtsgeschichte. Romanistische Abteilung. 117:274-310
Autor:
Masayuki Takahashi, Ewa Folta-Stogniew, Charles M. Radding, Shawn M. O'Malley, Ravindra C. Gupta
Publikováno v:
Molecular Cell. 4(5):705-714
Human Rad51 belongs to a ubiquitous family of proteins that enable a single strand to recognize homology in duplex DNA, and thereby to initiate genetic exchanges and DNA repair, but the mechanism of recognition remains unknown. Kinetic analysis by fl
Autor:
Stephen C. West, Sophia I. Passy, Xiong Yu, Jean-Yves Masson, Charles M. Radding, Zhufang Li, Edward H. Egelman
Publikováno v:
Proceedings of the National Academy of Sciences. 96:10684-10688
The bacterial RecA protein has been the most intensively studied enzyme in homologous genetic recombination. The core of RecA is structurally homologous to that of the F1-ATPase and helicases. Like the F1-ATPase and ring helicases, RecA forms a hexam