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Biochemistry|April 2, 1998
Crystal structure of human arylsulfatase A: the aldehyde function and the metal ion at the active site suggest a novel mechanism for sulfate ester hydrolysisG Lukatela, N Krauss, K Theis, et al.Biochemistry|September 6, 1994
Impact of point mutations on the structure and thermal stability of ribonuclease T1 in aqueous solution probed by Fourier transform infrared spectroscopyH Fabian, C Schultz, J Backmann, et al.Proceedings of the National Academy of Sciences of the United States of America|January 15, 1991
Molecular dynamics simulation of the hydration shell of a B-DNA decamer reveals two main types of minor-groove hydration depending on groove widthV P Chuprina, U Heinemann, A A Nurislamov, et al.Biochemistry|November 24, 1992
Role of histidine-40 in ribonuclease T1 catalysis: three-dimensionalstructures of the partially active His40Lys mutantI Zegers, P Verhelst, H W Choe, et al.Nature|February 24, 2001
Crystal structure of photosystem II from Synechococcus elongatus at 3.8 A resolutionA Zouni, H T Witt, J Kern, et al.Journal of Molecular Biology|April 5, 1992
His92Ala mutation in ribonuclease T1 induces segmental flexibility. An X-ray studyG Koellner, H W Choe, U Heinemann, et al.The Journal of Biological Chemistry|March 6, 1999
Localization of two phylloquinones, QK and QK', in an improved electron density map of photosystem I at 4-A resolutionO Klukas, W D Schubert, P Jordan, et al.Journal of Molecular Biology|May 20, 1992
RNase T1 mutant Glu46Gln binds the inhibitors 2'GMP and 2'AMP at the 3' subsiteJ Granzin, R Puras-Lutzke, O Landt, et al.Protein Engineering|September 1, 1993
Trp59 to Tyr substitution enhances the catalytic activity of RNase T1 and of the Tyr to Trp variants in positions 24, 42 and 45H P Grunert, O Landt, M Zirpel-Giesebrecht, et al.The Journal of Biological Chemistry|March 6, 1999
Photosystem I, an improved model of the stromal subunits PsaC, PsaD, and PsaEO Klukas, W D Schubert, P Jordan, et al.Pageof 20