Characterization of a novel Eph receptor tyrosine kinase, EphA10, expressed in testis
BIOCHIMICA ET BIOPHYSICA ACTA-GENERAL SUBJECTS
Authors: Aasheim, HC; Patzke, S; Hjorthaug, HS; Finne, EF
Abstract
In mammals, 14 members of the Eph receptor tyrosine kinase family have been described so far. Here we present a not yet described member of this family denoted EphA10. We report the identification of three putative EphA10 isoforms: one soluble and two transmembrane isoforms. One of the latter isoforms lacked the sterile alpha motif commonly found in Eph receptors. The gene encoding EphA10 is located on chromosome 1p34 and expression studies show that EphA10 mRNA is mainly expressed in testis. Binding studies to ephrin ligands suggests that this receptor belongs to the EphA subclass of Eph receptors binding mainly to ephrin-A ligands. (c) 2005 Elsevier B.V. All rights reserved.
Generation and characterization of a bispecific diabody targeting both EPH receptor A10 and CD3
BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS
Authors: Kamada, Haruhiko; Taki, Shintaro; Nagano, Kazuya; Inoue, Masaki; Ando, Daisuke; Mukai, Yohei; Higashisaka, Kazuma; Yoshioka, Yasuo; Tsutsumi, Yasuo; Tsunoda, Shin-ichi
Abstract
The EPH receptor A10 (EphA10) is up-regulated in breast cancer but is not normally expressed in healthy tissue, thus it has been suggested that EphA10 may be a useful target for cancer therapy. This study reports a diabody, an antibody derivative binding two different target molecules, EphA10 expressed in tumor cells and CD3 expressed in T cells, which showed T cell dependent-cytotoxicity. The diabody, which has His-tagged and FLAG-tagged chains, was expressed in Escherichia coli and purified in both heterodimer (Db-1) and homodimer (Db-2) formulations by liquid chromatography. Flow cytometry analysis using EphA10-expressing cells showed that binding activity of heterodimers was stronger than that of homodimers. Addition of diabodies to PBMC cultures resulted in T-cell mediated redirected lysis, and the bioactivity was consistent with the stronger binding activity of heterodimeric diabody formulations. Our results indicate that diabodies recognizing both EphA10 and CD3 could have a range of potential applications in cancer therapy, such as breast cancers that express the EPH receptor A10, especially triple negative breast cancer. (C) 2014 Elsevier Inc. All rights reserved.