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Mouse prolactin was purified by organ culture of pituitaries and electrophoresis of the medium. Mouse pituitaries were organ-cultured in 9-cm Petri dishes containing Waymouth's medium (MB 752/1) supplemented with penicillin (50 units/ml), streptomycin (100mug/ml), and bovine insulin (0.12 I.U./ml) for 8 days. Prolactin-rich culture medium was half-saturated with ammonium sulfate and centrifuged. The pellet was subjected to analytical disc electrophoresis (10% acrylamide). Gels were sectioned into 2-mm segments. Prolactin was eluted in 0.04M phosphate buffer (pH 7.2), dialyzed and lyophylized. Two hundred and forty ml medium in which 360 pituitaries were cultured yielded 29.3 mg lyophylized mouse prolactin. Although the preparation contained 2 other bands on acrylamide gel disc electrophoresis, a single precipitin line was seen in immunodiffusion and immunoelectrophoresis, showing the identity of their antigenicity. From these results, two other proteins in the preparation were suggested to be deamidated prolactin.  相似文献   
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A very hydrophilic compound was isolated from parsley cell suspension cultures in high yield after application of nicotinic acid. Using chemical, chromatographic and spectroscopic procedures the structure of this new plant constituent has been elucidated as nicotinic acid N-alpha-L-arabinopyranoside. This structure has been proved by chemical synthesis. An arabinosyltransferase was isolated from parsley cell suspension cultures and purified about 19-fold. The enzyme converted nicotinic acid N-alpha-arabinoside with UDP to nicotinic acid and UDP-arabinose. pH-Optimum (pH 7.0-8.0), Km value for nicotinic acid N-alpha-L-arabinoside (2.2 X 10(-4) mol/l) and mol. wt. (app. 70 000) of the transferase were measured. Function and biosynthesis of the arabinoside in cell cultures are discussed.  相似文献   
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A developmentally homogeneous neural crest cell population has been used to assay the role of environmental factors in regulating crest cell differentiation. If cultured on tissue culture plastic, virtually all of the cells of this population differentiate into melanocytes. In contrast, when these cells are cultured for 3 or more days on substrata “conditioned” by somite fibroblasts, the proportion of cells undergoing melanogenesis decreased and the proportion expressing formaldehyde-induced fluorescence (FIF), characteristic of catecholamine-containing cells, increased. For a limited period of culture on somite-conditioned substrata, some cells in the population exhibit both pigment granules and fluorescence. Collagen-coated substrata decreased the number of cells that formed pigment but did not stimulate FIF. In contrast, optimum doses of exogenous cellular fibronectin mimicked the effect of somite-conditioned substrata, suppressing melanogenesis and promoting FIF. Glycosaminoglycan-derivatized substrata (i.e., hyaluronic acid, various chondroitin sulfate preparations, and heparin) did not alter the differentiative homogeneity of the cultured crest cell populations. The choice and expression of phenotype by some members of a cultured crest cell population can, therefore, be affected by environmental stimuli provided in the form of certain substrate-attached macromolecules. We suggest that optimal concentrations of some extracellular matrix components produced by embryonic tissue and normally encountered by migrating crest cells may elicit the expression of FIF in crest cells that would otherwise follow a different developmental pathway.  相似文献   
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