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Insulin-like growth factor I receptors in neuronal and glial cells. Characterization and biological effects in primary culture 总被引:5,自引:0,他引:5
J Shemer M K Raizada B A Masters A Ota D LeRoith 《The Journal of biological chemistry》1987,262(16):7693-7699
Primary cultures of neuronal and glial cells from 1-day-old neonatal rats contain high affinity receptors for insulin-like growth factor I (IGF-I). The IC50 for displacement of 125I-IGF-I binding by unlabeled IGF-I was 3 nM for neuronal cells and 4 nM for glial cells. Unlabeled insulin was 20-50 times less potent. Apparent molecular mass of the alpha subunits of the IGF-I receptor was 125 kDa in neuronal and 135 kDa in glial cells. IGF-I induced autophosphorylation of the IGF-I receptor beta subunit in lectin-purified membrane preparations in a dose-dependent manner. The major phosphoamino acid of the beta subunit in both cell types was tyrosine in the IGF-I-stimulated state and serine in the basal state. Apparent molecular mass of the beta subunits of the IGF-I receptors was 91 kDa for neuronal and 95 kDa for glial cells. Tyrosine kinase activity of the IGF-I receptors was demonstrated by IGF-I-induced phosphorylation of the exogenous substrate poly(Glu, Tyr) 4:1 in both cell types. IGF-I had no effect on 2-deoxyglucose uptake in neuronal cells. In contrast, in glial cells, IGF-I stimulated 2-deoxyglucose uptake at very high doses, presumably acting via the insulin receptor. The effect of IGF-I as a neurotrophic growth factor in both neuronal and glial cells was demonstrated by its stimulation of [3H]thymidine incorporation. These findings suggest the IGF-I is an important growth factor in nervous tissue-derived cells. 相似文献
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Calcium (Ca) concentrations were studied in the central nervous system (CNS) of four patients with definite multiple sclerosis
(MS, average age 49 yr) and five controls (average age 68 yr). The Ca concentration was determined by neutron activation analysis
in autopsy samples taken from the 26 subanatomical regions of CNS tissues. Although the mean Ca concentration in the 26 CNS
regions combined was higher in the four MS patients than in the controls, the content of white matter was lower. Whether or
not this significantly lower Ca concentration found in the white matter of MS patients plays an important role in the demyelinating
process remains unclear, although that lower concentration seems not be age dependent, but MS specific. 相似文献
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Choline Kinase and Phosphorylcholine Phosphatase in Plants 总被引:13,自引:7,他引:6
Choline kinase was present in barley and wheat roots and leaves of barley, wheat, tobacco, spinach and squash plants. The kinase was purified 25-fold from spinach leaves. The enzyme had a broad pH optimum between 7.5 and 10.0. Mg(++) was required for activity and in the presence of Mg(++) the enzyme was relatively stable. Maximum enzyme activity was obtained when the Mg(++): ATP ratio was 1:1. The K(m) was 1 x 10(-4)m. The kinase from leaves was similar to that from rapeseed or from yeast, except that the leaf and seed enzymes were not inhibited by compounds which attach sulfhydryl groups.Only a very slow hydrolysis of phosphorylcholine by similar plant extracts was observed. This phosphatase activity was purified 200- or 300-fold and appeared to be caused by a nonspecific acid phosphatase.The activity of both the kinase and the phosphatase did not seem sufficient to account for the rapid equilibration of the large phosphorylcholine reservoir of plants with exogenous P(32)-labeled orthophosphate. 相似文献
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