Recombinant human nerve growth factor is biologically active and labels novel high-affinity binding sites in rat brain.
- 1 January 1991
- journal article
- Published by Proceedings of the National Academy of Sciences in Proceedings of the National Academy of Sciences
- Vol. 88 (1) , 281-285
- https://doi.org/10.1073/pnas.88.1.281
Abstract
Iodinated recombinant human nerve growth factor (125I-rhNGF) stimulated neurite formation in PC12 cell cultures with a half-maximal potency of 35-49 pg/ml, compared with 39-52 pg/ml for rhNGF. In quantitative ligand autoradiography, the in vitro equilibrium binding of 125I-rhNGF to brain sections showed a 10-fold regional variation in density and was saturable, reversible, and specifically displaced by up to 74% with rhNGF or murine NGF (muNGF). At equilibrium, 125I-rhNGF bound to these sites with high affinity (Kd 52-85 pM) and low capacity (Bmax less than or equal to 13.2 fmol/mg of protein). Calculation of 125I-rhNGF binding affinity by kinetic methods gave average Kd values of 24 and 31 pM. Computer-generated maps revealed binding in brain regions not identified previously with 125I-muNGF, including hippocampus; dentate gyrus; amygdala; paraventricular thalamus; frontal, parietal, occipital, and cingulate cortices; nucleus accumbens; olfactory tubercle; subiculum; pineal gland; and medial geniculate nucleus. NGF binding sites were distributed in a 2-fold increasing medial-lateral gradient in the caudate-putamen and a 2-fold lateral-medial gradient in the nucleus accumbens. 125I-rhNGF binding sites were also found in most areas labeled by 125I-muNGF, including the interpedunucular nucleus, cerebellum, forebrain cholinergic nuclei, caudoventral caudate-putamen, and trigeminal nerve nucleus. 125I-rhNGF binding sites were absent from areas replete with low-affinity NGF binding sites, including circumventricular organs, myelinated fiber bundles, and choroid plexus. The present analysis provides an anatomical differentiation of high-affinity 125I-rhNGF binding sites and greatly expands the number of brain structures that may respond to endogenous NGF or exogenously administered rhNGF.Keywords
This publication has 40 references indexed in Scilit:
- Expression of high- and low-affinity nerve growth factor receptors by Purkinje cells in the developing rat cerebellumExperimental Neurology, 1989
- Localization of nerve growth factor receptors in the normal human brain and in Alzheimer's diseaseNeurobiology of Aging, 1989
- Nerve growth factor receptors in the central nervous systemExperimental Neurology, 1988
- Nerve growth factor receptor immunoreactivity in the nonhuman primate (Cebus apella): Distribution, morphology, and colocalization with cholinergic enzymesJournal of Comparative Neurology, 1988
- [3H]vesamicol binding in brain: Autoradiographic distribution, pharmacology, and effects of cholinergic lesionsSynapse, 1988
- The cholinergic systems in brain and spinal cordProgress in Neurobiology, 1986
- The organization and some projections of cholinergic neurons of the mammalian forebrainBrain Research Reviews, 1982
- Properties of a sarcoma‐growth‐factor‐like peptide from cells transformed by a temperature‐sensitive sarcoma virusJournal of Cellular Physiology, 1981
- Quantitative analysis of drug-receptor interactions: I. Determination of kinetic and equilibrium propertiesLife Sciences, 1981
- Choline acetyltransferase activity and mass fragmentographic measurement of acetylcholine in specific nuclei and tracts of rat brainNeuropharmacology, 1975