1. EXPRESSION OF P2X PURINOCEPTORS IN PC12 PHAEOCHROMOCYTOMA CELLS
- Author
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Zheng-Hua Xiang, Ji-Hu Sun, and Guo-Jun Cai
- Subjects
endocrine system ,Patch-Clamp Techniques ,Physiology ,PC12 cell line ,Alpha (ethology) ,Biology ,PC12 Cells ,chemistry.chemical_compound ,Physiology (medical) ,Nerve Growth Factor ,Animals ,RNA, Messenger ,Patch clamp ,Receptor ,Pharmacology ,Receptors, Purinergic P2 ,musculoskeletal, neural, and ocular physiology ,Molecular biology ,Rats ,Reverse transcription polymerase chain reaction ,Electrophysiology ,Nerve growth factor ,nervous system ,chemistry ,Receptors, Purinergic P2X ,Immunohistochemistry - Abstract
1. The PC12 cell line, which was cloned from a rat adrenal phaeochromocytoma, is a useful model system. It expresses neuronal properties after treatment with nerve growth factor (NGF). The nervous system-specific P2X receptor subtype P2X(2) was initially cloned from PC12 cells, but little is known about the expression of other subtypes of P2X receptors in PC12 cells. The aim of the present study was to investigate whether PC12 cells express the other P2X receptors when exposed to NGF. 2. Reverse transcription-polymerase chain reaction at the mRNA level and immunocytochemisty at the protein level showed that, among the seven P2X purinoceptor subtypes, only P2X(2) was found to be expressed in undifferentiated PC12 phaeochromocytoma cells, but all seven P2X purinoceptor subtypes were expressed in differentiated PC12 cells treated with 50 microg/mL NGF. 3. Electrophysiological recordings indicated that ATP (30 micromol/L) but not alpha,beta-methylene ATP (alpha,beta-meATP; 30 micromol/L) evoked an inward current in undifferentiated PC12 cells, but both alpha,beta-meATP and ATP evoked inward currents in differentiated PC12 cells. The results indicate that the NGF-induced P2X receptors expressed in PC12 cells are functional channels. 4. The present study suggests that the NGF-induced neuronal phenotype of PC12 cells may be a model for the study of P2X heteromeric receptors.
- Published
- 2007