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Nature|May 23, 1996
Structure of mitochondrial creatine kinaseK Fritz-Wolf, T Schnyder, T Wallimann, et al.The Journal of Biological Chemistry|October 17, 2001
Mitochondrial creatine kinase and mitochondrial outer membrane porin show a direct interaction that is modulated by calciumU Schlattner, M Dolder, T Wallimann, et al.Molecular and Cellular Biochemistry|April 1, 1994
Compartmentation of ATP synthesis and utilization in smooth muscle: roles of aerobic glycolysis and creatine kinaseY Ishida, I Riesinger, T Wallimann, et al.The Thoracic and Cardiovascular Surgeon|April 28, 1999
The urgent pulmonary embolectomy: mechanical resuscitation in the operating theatre determines the outcomeM Ullmann, W Hemmer, A HannekumPacing and Clinical Electrophysiology : PACE|November 1, 1986
Complications in dual chamber pacing: a six-year experienceA Markewitz, W Hemmer, C WeinholdThe Biochemical Journal|July 15, 1997
Activation of sea-urchin sperm motility is accompanied by an increase in the creatine kinase exchange fluxF A Dorsten, M Wyss, T Wallimann, et al.Journal of Muscle Research and Cell Motility|August 1, 1992
In situ compartmentation of creatine kinase in intact sarcomeric muscle: the acto-myosin overlap zone as a molecular sieveG Wegmann, E Zanolla, H M Eppenberger, et al.BMC Evolutionary Biology|May 7, 2016
Holding it together: rapid evolution and positive selection in the synaptonemal complex of DrosophilaLucas W Hemmer, Justin P BlumenstielBiomedica Biochimica Acta|January 1, 1986
Myosin light chain functionsM C Schaub, A Jauch, D Walzthoeny, et al.The Journal of Biological Chemistry|June 5, 1990
Functional studies with the octameric and dimeric form of mitochondrial creatine kinase. Differential pH-dependent association of the two oligomeric forms with the inner mitochondrial membraneJ Schlegel, M Wyss, H M Eppenberger, et al.Pageof 23