1. A stereospecific radioreceptor binding assay for the phencyclidine analogue [3H]TCP was utilized to screen for inhibitors of binding in extracts of rat brain. 2. Extracts were prepared from rat cortex and hippocampus by methods employing aqueous acid or acidified methanol. Samples were fractionated by reversed phase-HPLC (RP-HPLC) and tested for activity in the radioreceptor assay. Three zones of activity were detected. The most active fraction was further purified by high performance-size exclusion chromatography. 3. Size exclusion chromatography revealed two zones of activity, corresponding to mol. wts of 4000-8000 Da and 1000-2000 Da. Final purification of the lower molecular weight material was achieved by RP-HPLC. 4. Two well-separated peaks were shown to be homogeneous. Their amino acid sequences were determined by automated Edman degradation and data base searching identified these two peaks as the undecapeptide Substance P and its oxidized counterpart (Substance P sulfoxide). 5. Comparative HPLC of synthetic Substance P, or its sulfoxide, as well as spectral analysis confirmed the identity of the isolated peptides. 6. Synthetic Substance P inhibits specific [3H]TCP binding in the radioreceptor assay.
1. A stereospecific radioreceptor binding assay for the phencyclidine analogue, [3H]TCP, was utilized to screen for inhibition of binding in extracts of rat brain. 2. Extracts were prepared from rat cerebral cortex and hippocampus by methods employing aqueous acid. The extracts were fractionated by reversed phase-HPLC (RP-HPLC) and tested for activity in the radioreceptor assay. Three zones of activity were detected. The middle zone was further purified by high performance-size exclusion chromatography (HP-SEC). 3. Size exclusion chromatography revealed a single zone of activity corresponding to mol. wts of ca 12,000-31,000 daltons. A fraction from this zone was digested with trypsin, and the resulting enzyme fragments, isolated by a combination of HP-SEC and RR-HPLC, were identified as fragments of rat cytochrome C. 4. Horse cytochrome C was digested with trypsin and the fragments were similarly purified on the basis of the [3H]TCP binding displacement assay. The fragments were sequenced and found to be trypsin cleavage products of a single largely invariant domain of the cytochrome C molecule: Lys-Lys-Lys-Asp-Glu-Arg-Ala-Asp-Leu-Ile-Ala-Tyr-Leu-Lys-Lys. 5. beta-neuroprotectin (D)-Ala-Asp-Leu-Ile-Ala-Tyr-Leu-NH2, inhibits [3H]TCP binding and provides protection against NMDA mediated neuronal cell death at low concentrations.