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The Journal of Biological Chemistry|July 10, 1982
Structure of the Syrian hamster ribosomal DNA repeat and identification of homologous and nonhomologous regions shared by human and hamster ribosomal DNAsS J Triezenberg, C Rushford, R P Hart, et al.Cell|July 1, 1983
Major changes in the 5' and 3' chromatin structure of sea urchin histone genes accompany their activation and inactivation in developmentP N Bryan, J Olah, M L BirnstielCell|December 1, 1981
Nucleosome arrangement on tRNA genes of Xenopus laevisP N Bryan, H Hofstetter, M L BirnstielBiochemistry|August 29, 2001
Cation-dependent stability of subtilisinP A Alexander, B Ruan, P N BryanBiochemistry|February 2, 2000
Structure and dynamics of an acid-denatured protein G mutantN Sari, P Alexander, P N Bryan, et al.Protein Science : a Publication of the Protein Society|November 25, 1998
Stabilizing the subtilisin BPN' pro-domain by phage display selection: how restrictive is the amino acid code for maximum protein stability?B Ruan, J Hoskins, L Wang, et al.Biochemistry|April 16, 1998
Engineering the independent folding of the subtilisin BPN' pro-domain: correlation of pro-domain stability with the rate of subtilisin foldingL Wang, B Ruan, S Ruvinov, et al.Nucleic Acids Research|April 1, 1979
Core nucleosomes by digestion of reconstructed histone-DNA complexesP N Bryan, E B Wright, D E OlinsThe Journal of Biological Chemistry|August 22, 2000
NMR structure of the N-terminal J domain of murine polyomavirus T antigens. Implications for DnaJ-like domains and for mutations of T antigensM V Berjanskii, M I Riley, A Xie, et al.Biochemistry|August 29, 2001
Stabilizing mutations and calcium-dependent stability of subtilisinP A Alexander, B Ruan, S L Strausberg, et al.Pageof 9