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61.
Activation of phosphorylating vesicles by net transfer of phosphatidyl choline by phospholipid transfer protein 总被引:2,自引:0,他引:2
Y Kagawa L W Johnson E Racker 《Biochemical and biophysical research communications》1973,50(2):245-251
Vesicles formed with phosphatidyl ethanolamine, phosphatidyl choline, cardiolipin, coupling factors and hydrophobic proteins from bovine heart mitochondria catalyzed a rapid32Pi-ATP exchange. When phosphatidyl choline was deleted during the assembly of the vesicles, little32Pi-ATP exchange was observed. Exchange activity was induced by incubating such deficient vesicles with phosphatidyl choline liposomes in the presence of a phosphatidyl choline transfer protein isolated from bovine heart. Transfer of [32P] phosphatidyl choline was demonstrated by isolation of the activated vesicles by sucrose density centrifugation. 相似文献
62.
63.
The influence of kairomones on the numerical response of the parasitoidTrioxys indicus against its hostAphis craccivora at its varying density was studied. The kairomones (applied as aqueous extract of the host) significantly enhanced the rate
of parasitisation and multiplication and the area of discovery of the parasitoid and also the K-values of mortality of the
host at all parasitoid densities introduced (1, 2, 4, 8, 12 and 16 parasitoids) into troughs having about 200 hosts. The sex-ratio
of F1 offspring decreased at lower parasitoid densities and remained more or less unchanged at higher parasitoid densities after
the application of kairomones. The present findings indicate that if kairomones are applied properly, the number of hosts
destroyed by a stimulated parasitoid will be about 200, twice the number reported earlier, thus fewer parasitoids will be
needed to regulate an estimated population of the hosts.
相似文献
64.
Colony-stimulating factor 1 (CSF-1) selectively supports the survival, proliferation, and maturation of hemopoietic cells of the monocyte/macrophage lineage. Although the cellular receptor for CSF-1, (the c-fms protein) is a protein-tyrosine kinase activated by the binding of CFS-1, the role of phosphorylation of cellular proteins in CSF-1 signal transduction is poorly understood. Therefore, we examined the CSF-1-stimulated phosphorylation of cellular proteins in human BeWo choriocarcinoma cell line (known to express the c-fms protein). BeWo cells were metabolically labeled with 32Pi, stimulated with recombinant human CSF-1, and extracted with detergent. Phosphotyrosyl proteins were isolated from detergent extracts by affinity chromatography on a highly specific antibody to phosphotyrosine. Rapid phosphorylation of 170-kd protein, followed closely by the phosphorylation of a 56-kd protein, was observed in response to CSF-1. The 170-kd phosphotyrosyl protein bound to wheat germ agglutinin and was secondarily immunoprecipitated with a specific anti-fms serum, consistent with its identity as the CSF-1 receptor. Although purified human macrophages that proliferate in culture in response to CSF-1 are not generally accessible, CSF-1 did stimulate the phosphorylation of a 56-kd protein in intact mononuclear leukocytes from human peripheral blood. Thus, the BeWo cell line may represent a good model for the study of CSF-1-stimulated cellular protein phosphorylation. 相似文献
65.
Olwin BB 《Cytotechnology》1989,2(4):351-365
Heparin-binding growth factors modulate diverse biological activities including cellular proliferation, cellular differentiation, morphogenesis, and angiogenesis. Biochemical characterization for two members of the heparin-binding growth factor family, acidic and basic fibroblast growth factors, is extensive, while characterization of the remaining five members is forthcoming. Cell surface receptors have been identified for acidic and basic fibroblast growth factors, but little is known concerning their sites of action in vivo or the mechanisms involved in transducing the energy of growth factor binding to a biological response. An understanding of the biological basis for the diversity of the heparin binding growth factor family and the in vivo actions of these factors will prove a major challenge to future research efforts. 相似文献
66.
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68.
We have investigated the localization of atrial natriuretic factor (ANF)-like immunoreactivity in the central nervous system of the cartilaginous fish, Scyliorhinus canicula, using the indirect immunofluorescence technique. Immunoreactive perikarya and fibers were observed in two regions of the telencephalon, the area superficialis basalis and the area periventricularis ventrolateralis. In the diencephalon, the hypothalamus exhibited a moderate number of ANF-containing neurons and fibers located in the preoptic and periventricular nuclei and in the nucleus lateralis tuberis. The most important group of ANF-immunoreactive cells was observed in the nucleus tuberculi posterioris of the diencephalon. In contrast, the mesencephalon showed only a few ANF-positive nerve processes located in the tegmentum mesencephali. Numerous fine fibers and nerve terminals were found in the dorsal area of the neurointermediate lobe of the pituitary. These results provide the first evidence for the presence of ANF-related peptides in the brain of a cartilaginous fish. The widespread distribution of ANF-positive cells and fibers in the brain and pituitary suggests that this peptide may act both as a neurotransmitter and (or) a neurohormone in fish. 相似文献
69.
Angie Rizzino Peter Kazakoff John Nebelsick 《In vitro cellular & developmental biology. Plant》1990,26(5):537-542
Summary Previous studies have shown that cell density can regulate the binding of several growth factors. To determine whether cell
density exerts a uniform effect on the expression of epidermal growth factor (EGF) receptors, seven cell lines were examined
in detail. For each cell line, EGF binding was found to decrease as cell density increases. Scatchard analysis of the binding
data reveals that decreases in EGF binding are due to reductions in the number of cell surface EGF receptors. The only apparent
exception is the effect of cell density on the binding of EGF to A-431 cells. For these cells, increases in cell density lead
to two effects: decreases in the number of high affinity EGF receptors and increases in the total number of EGF receptors.
In addition to the effects of cell density on EGF receptors, it was determined that increases in cell density can coordinately
down-regulate receptors for as many as four different growth factors. Overall, the findings described in this report for EGF
and those previously described for transforming growth factor type-β (TGF-β) and fibroblast growth factor (FGF) demonstrate
the existence of a common mechanism for down-regulating growth factor receptors.
This work was supported by grants from the Nebraska Department of Health (89-51), the National Cancer Institute (Laboratory
Research Center Support Grant, CA36727), and the American Cancer Society (Core Grant ACS SIG-16).
EDITOR'S STATEMENT The paper by Rizzino et al. demonstrates that receptor number decreases as a function of cell density.
This may represent a mechanism by which cell proliferation is reduced as cell density increases. 相似文献
70.