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Nucleic Acids Research|July 25, 1983
Inducible high level synthesis of mature human fibroblast interferon in Escherichia coliE Remaut, P Stanssens, W FiersBiochemistry|September 3, 1991
Subsite interactions of ribonuclease T1: viscosity effects indicate that the rate-limiting step of GpN transesterification depends on the nature of NJ Steyaert, L Wyns, P StanssensCell|March 14, 1986
Inefficient translation initiation causes premature transcription termination in the lacZ geneP Stanssens, E Remaut, W FiersGene|January 1, 1985
Alterations upstream from the Shine-Dalgarno region and their effect on bacterial gene expressionP Stanssens, E Remaut, W FiersBiochemistry|January 15, 1991
Quantitative analysis of the contribution of Glu46 and Asn98 to the guanosine specificity of ribonuclease T1J Steyaert, C Opsomer, L Wyns, et al.Biochemistry|September 25, 1990
Histidine-40 of ribonuclease T1 acts as base catalyst when the true catalytic base, glutamic acid-58, is replaced by alanineJ Steyaert, K Hallenga, L Wyns, et al.European Journal of Biochemistry|February 1, 1992
Dissection of the ribonuclease T1 subsite. The transesterification kinetics of Asn36Ala and Asn98Ala ribonuclease T1 for minimal dinucleoside phosphatesJ Steyaert, A F Haikal, P Stanssens, et al.Biochemistry|September 3, 1991
Subsite interactions of ribonuclease T1: Asn36 and Asn98 accelerate GpN transesterification through interactions with the leaving nucleoside NJ Steyaert, A F Haikal, L Wyns, et al.Biochemistry|January 28, 1992
Contribution of hydrogen bonding to the conformational stability of ribonuclease T1B A Shirley, P Stanssens, U Hahn, et al.The Journal of Biological Chemistry|July 15, 1989
Conformational stability and activity of ribonuclease T1 and mutants. Gln25----Lys, Glu58----Ala, and the double mutantB A Shirley, P Stanssens, J Steyaert, et al.Pageof 3