Selective Impairment of Corticotropin-Releasing Factor1 (CRF1) Receptor-Mediated Function Using CRF Coupled to Saporin1
Author(s) -
Dominique Maciejewski-Lenoir,
Steve C. Heinrichs,
Xin-Jun Liu,
Nicholas Ling,
Anh Tucker,
Qiu Xie,
Douglas A. Lappi,
Dimitri E. Grigoriadis
Publication year - 2000
Publication title -
endocrinology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.674
H-Index - 257
eISSN - 1945-7170
pISSN - 0013-7227
DOI - 10.1210/endo.141.2.7336
Subject(s) - endocrinology , medicine , receptor , anterior pituitary , receptor antagonist , transfection , saporin , antagonist , neuropeptide , biology , hypothalamus , corticotropin releasing hormone , chemistry , cell culture , in vitro , cytotoxicity , hormone , biochemistry , genetics , immunotoxin
CRF is the main component in the brain neuropeptide effector system responsible for the behavioral, endocrine, and physiological activation that accompanies stress activation. Reduced CRF system activation plays a role in the etiology of a variety of psychiatric and metabolic disease states. We have developed a novel protein conjugate that joins native rat/human CRF to a ribosome-inactivating protein, saporin (CRF-SAP), for the purpose of targeted inactivation of CRF receptor-expressing cells. Cytotoxicity measurements revealed that CRF-SAP (1–100 nm) produced concentration-dependent and progressive cell death over time in CRF1 receptor-transfected L cells, but at similar concentrations had no effect on CRF2α receptor-transfected cells. The CRF-SAP-induced toxicity in CRF1-transfected cells was prevented by coincubation with the competitive CRF1/CRF2 receptor peptide antagonist,[ d-Phe12]CRF-(12–41), or the selective nonpeptide CRF1 receptor antagonist, NBI 27914. Finally, in cultured rat pituitary cells that express native CRF1 receptors, CRF-SAP suppressed CRF-induced (1 nm) ACTH release. GnRH (1–10 nm) stimulated LH release was also assessed in the same pituitary cultures. Although there was a slight decrease in LH release from these cultures, this decrease was observed with CRF-SAP or SAP alone, suggesting that the response was nonspecific. Taken together, these results suggest the utility of CRF-SAP as a specific and subtype-selective tool for long term impairment of CRF1 receptor-expressing cells.
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