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Molecular Immunology|February 1, 1996
A single-chain bispecific Fv2 molecule produced in mammalian cells redirects lysis by activated CTLC R Jost, J A Titus, I Kurucz, et al.Molecular Immunology|December 1, 1995
Correct disulfide pairing and efficient refolding of detergent-solubilized single-chain Fv proteins from bacterial inclusion bodiesI Kurucz, J A Titus, C R Jost, et al.Muscle & Nerve|August 9, 2001
Changes in glycolytic network and mitochondrial design in creatine kinase-deficient musclesA J de Groof, F T Oerlemans, C R Jost, et al.Journal of Hematotherapy|October 1, 1995
Alternative triggering molecules and single chain bispecific antibodiesD M Segal, G Sconocchia, J A Titus, et al.Proceedings of the National Academy of Sciences of the United States of America|May 1, 1993
A bacterially expressed single-chain Fv construct from the 2B4 T-cell receptorI Kurucz, C R Jost, A J George, et al.Journal of Immunology (Baltimore, Md. : 1950)|May 1, 1995
Retargeting of CTL by an efficiently refolded bispecific single-chain Fv dimer produced in bacteriaI Kurucz, J A Titus, C R Jost, et al.Journal of Submicroscopic Cytology and Pathology|October 1, 1991
The human neutrophil FcRIII (CD16) on the plasma membrane can be replenished from an intracellular sourceA L Kiss, C R Jost, J A Fransen, et al.Blood|December 1, 1991
Intracellular localization of glycosyl-phosphatidylinositol-anchored CD67 and FcRIII (CD16) in affected neutrophil granulocytes of patients with paroxysmal nocturnal hemoglobinuriaC R Jost, M L Gaillard, J A Fransen, et al.European Journal of Cell Biology|April 1, 1991
On the origin of the FcRIII (CD16)-containing vesicle population in human neutrophil granulocytesC R Jost, R de Goede, J A Fransen, et al.The Journal of Biological Chemistry|October 21, 1994
Mammalian expression and secretion of functional single-chain Fv moleculesC R Jost, I Kurucz, C M Jacobus, et al.Pageof 2