TY - JOUR
T1 - Construction of a novel constitutively active chimeric EGFR to identify new targets for therapy
AU - Cheng, Hua
AU - Langley, Robert R.
AU - Wu, Qiuyu
AU - Wu, Wenjuan
AU - Feng, Jie
AU - Tsan, Rachel
AU - Fan, Dominic
AU - Fidler, Isaiah J.
N1 - Funding Information:
Abbreviations: EGFR, epidermal growth factor receptor; TGF-a, transforming growth factor alpha; HEK, human embryonic kidney; STAT, signal transducer and activator of transcription; DMEM, Dulbecco’s minimum essential medium; CMV, cytomegalovirus; bFGF, basic fibroblast growth factor; EGF, epidermal growth factor; wtEGFR, wild-type epidermal growth factor receptor; MMP, matrix metalloproteinase Address all correspondence to: Isaiah J. Fidler, Department of Cancer Biology, Unit 173, The University of Texas M. D. Anderson Cancer Center, 1515 Holcombe Boulevard, Houston, TX 77030. E-mail: [email protected] 1This work was supported, in part, by Cancer Center Support Grant CA16672 and SPORE in Prostate Grant CA90270 from the National Cancer Institute, National Institutes of Health. 2Hua Cheng and Robert R. Langley contributed equally to this work. Received 25 August 2005; Revised 4 October 2005; Accepted 5 October 2005.
PY - 2005
Y1 - 2005
N2 - Tumor cells and tumor-associated endothelial cells express activated epidermal growth factor receptor (EGFR) due to production of EGF-related ligands in the tumor microenvironment. To investigate the effect of perpetual EGFR activation on endothelial cells, we developed a novel method to generate constitutively active EGFR. We fused the entire intracellular domain of the EGFR to the N-terminus of the CD3ζ component of the T-cell receptor signaling complex. Expression of the chimeric receptor CD3-EGFR in EGFR-deficient human embryonic kidney cells resulted in ligand-independent sustained EGFR phosphorylation and in the induction of Akt, mitogen-activated protein kinase, and signal transducer and activator of transcription 3 (Stat3). Next, CD3-EGFR, was stably expressed in murine brain endothelial cells where it signaled for the initiation of angiogenic programs, Stat3 activation, and continuous proliferation. A comparison between brain endothelial cells encoding CD3ζ and CD3-EGFR revealed that proangiogenic phenotype was modulated by the intracellular effector Stat3 and that suppression of this downstream target with the EGFR tyrosine kinase inhibitor PKI166 could revert this phenotype. Thus, our results validate the use of chimeric constitutively active receptors to replicate critical features observed in pathophysiological processes that can expedite the identification of novel therapeutic agents targeting EGFR activation and function.
AB - Tumor cells and tumor-associated endothelial cells express activated epidermal growth factor receptor (EGFR) due to production of EGF-related ligands in the tumor microenvironment. To investigate the effect of perpetual EGFR activation on endothelial cells, we developed a novel method to generate constitutively active EGFR. We fused the entire intracellular domain of the EGFR to the N-terminus of the CD3ζ component of the T-cell receptor signaling complex. Expression of the chimeric receptor CD3-EGFR in EGFR-deficient human embryonic kidney cells resulted in ligand-independent sustained EGFR phosphorylation and in the induction of Akt, mitogen-activated protein kinase, and signal transducer and activator of transcription 3 (Stat3). Next, CD3-EGFR, was stably expressed in murine brain endothelial cells where it signaled for the initiation of angiogenic programs, Stat3 activation, and continuous proliferation. A comparison between brain endothelial cells encoding CD3ζ and CD3-EGFR revealed that proangiogenic phenotype was modulated by the intracellular effector Stat3 and that suppression of this downstream target with the EGFR tyrosine kinase inhibitor PKI166 could revert this phenotype. Thus, our results validate the use of chimeric constitutively active receptors to replicate critical features observed in pathophysiological processes that can expedite the identification of novel therapeutic agents targeting EGFR activation and function.
KW - Angiogenesis
KW - Chimeric receptor
KW - EGFR
KW - Stat3
KW - Tumor endothelial cell
UR - https://www.scopus.com/pages/publications/33644876822
UR - https://www.scopus.com/pages/publications/33644876822#tab=citedBy
U2 - 10.1593/neo.05553
DO - 10.1593/neo.05553
M3 - Article
C2 - 16354589
AN - SCOPUS:33644876822
SN - 1522-8002
VL - 7
SP - 1065
EP - 1072
JO - Neoplasia
JF - Neoplasia
IS - 12
ER -