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Hemoglobin|January 1, 1984
Asymmetric hybrids formed with hemoglobin British Columbia (alpha 2 beta 2101Glu----Lys)R A StinsonBiochimica Et Biophysica Acta|November 9, 1984
Size and stability to sodium dodecyl sulfate of alkaline phosphatases from their three established human genesR A StinsonClinical Chemistry|November 1, 1993
Kinetic parameters for the cleaved substrate, and enzyme and substrate stability, vary with the phosphoacceptor in alkaline phosphatase catalysisR A StinsonJournal of Telemedicine and Telecare|May 13, 1999
Evaluation of telemedical support to a free-standing minor accident and treatment serviceS Tachakra, C Wiley, M Dawood, et al.The Analyst|February 20, 2016
A method of coupling the Paternò-Büchi reaction with direct infusion ESI-MS/MS for locating the C[double bond, length as m-dash]C bond in glycerophospholipidsCraig A Stinson, Yu XiaThe Journal of Biological Chemistry|October 5, 1988
The solubilization of tetrameric alkaline phosphatase from human liver and its conversion into various forms by phosphatidylinositol phospholipase C or proteolysisK Hawrylak, R A StinsonThe Analyst|April 4, 2013
Radical induced disulfide bond cleavage within peptides via ultraviolet irradiation of an electrospray plumeCraig A Stinson, Yu XiaFEBS Letters|February 23, 1987
Tetrameric alkaline phosphatase from human liver is converted to dimers by phosphatidylinositol phospholipase CK Hawrylak, R A StinsonBiochimica Et Biophysica Acta|January 17, 1986
Modulation of activity of human alkaline phosphatases by Mg2+ and thiol compoundsN Navaratnam, R A StinsonBiochimica Et Biophysica Acta|April 17, 1985
Properties of membrane-bound and solubilized forms of alkaline phosphatase from human liverA Chakrabartty, R A StinsonPageof 19