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Biomedical subjects

F Obermüller

Publications and source records attributed to F Obermüller.

2 recordsLinked to original sources

Cooperating oncogenes converge to regulate cyclin/cdk complexes.

The cooperation of oncogenes in the transformation of primary rat Schwann cells is a strikingly synergistic process. We have explored the molecular mechanisms involved. Activation of an inducible Raf kinase results in morphologically transformed cells that are arrested in G1 via the induction of p21(CiP1) and subsequent inhibition of cyclin/cdk activity. In contrast, coexpression of SV40 large T (LT) or a dominant-negative mutant of p53 abolishes p21(CiP1) induction and alleviates the growth arrest. Moreover in this scenario, Raf activation results in an increase in the specific activity of cyclin/cdk complexes with Raf and LT cooperating to superinduce cyclin A/cdk2 activity and stimulate proliferation in the absence of mitogens. Thus, signaling by Raf and its cooperating partners converges at the regulation of cyclin/cdk complexes, with the cellular responses to Raf modulated by p53.

Animals↗

A novel rat serotonin receptor: primary structure, pharmacology, and expression pattern in distinct brain regions.

Serotonin mediates various central and peripheral functions by its ability to bind to and activate a variety of receptors that belong to four pharmacologically defined classes termed 5-HT1 to 5-HT4. Using a polymerase chain reaction-derived probe, a clone, GPRFO, was isolated from a rat brain cDNA library. This cDNA encodes a putative G protein-coupled receptor that exhibits highest similarity to receptors for biogenic amines. RNA blot analysis indicated that the corresponding gene is expressed in the diencephalon. Consistent with the RNA blot data, GPRFO mRNA has been detected by in situ hybridization in the centrolateral, central medial, and intermediodorsal thalamic nuclei. Highest amounts of GPRFO mRNA, however, have been observed in a small area, i.e., the hippocampal rudiments and the stria longitudinalis. COS-7 cells transiently transfected with the GPRFO cDNA acquire saturable high-affinity binding sites for [3H]serotonin (KD = 41 nM). The pharmacological properties of the receptor differ from those of the known serotonin receptor subtypes, suggesting that the GPRFO cDNA encodes a novel serotonin receptor that is expressed in distinct rat brain regions.

Amino Acid Sequence↗