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Glugea hertwigi spores were activated to discharge sporoplasms in Medium 199 with 3% gelatin at pH 9.0; the liberated sporoplasms were transferred to a maintenance medium with 6% gelatin (pH 7.0) supplemented with 2 mM ATP and 10% (v/v) fetal calf scrum. The spherical sporoplasms (measuring 3.5-4 m?m in diameter) had single nuclei and had a cytoplasm rich in free ribosomes. Each G. hertwigi sporoplasm was initially bounded by an external (0.1-0.2 m?m) satellite body adjoining the plasma membrane. The satellites displayed ordered membrane and appeared to merge with the sporoplasm 15-30 min after spore discharge. The external location of the satellite (in reference to the discharged sporoplasm) seems to be part of the normal sequence of events under the in vitro conditions provided. The surface of G. hertwigi sporoplasms does not bear an obvious surface coat; however, our cytochemical observations indicate the plasma membrane of the sporoplasm was somewhat responsive to concanavalin A-peroxidase, colloidal iron, and native ferritin. During the short term incubations of sporoplasms with ferritin, the particles permeated membrane channels extending into the sporoplasm cytoplasm. 相似文献
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Carlo dela Se?a Kenneth M. Riedl Sureshbabu Narayanasamy Robert W. Curley Jr. Steven J. Schwartz Earl H. Harrison 《The Journal of biological chemistry》2014,289(19):13661-13666
β-Carotene 15–15′-oxygenase (BCO1) catalyzes the oxidative cleavage of dietary provitamin A carotenoids to retinal (vitamin A aldehyde). Aldehydes readily exchange their carbonyl oxygen with water, making oxygen labeling experiments challenging. BCO1 has been thought to be a monooxygenase, incorporating oxygen from O2 and H2O into its cleavage products. This was based on a study that used conditions that favored oxygen exchange with water. We incubated purified recombinant human BCO1 and β-carotene in either 16O2-H218O or 18O2-H216O medium for 15 min at 37 °C, and the relative amounts of 18O-retinal and 16O-retinal were measured by liquid chromatography-tandem mass spectrometry. At least 79% of the retinal produced by the reaction has the same oxygen isotope as the O2 gas used. Together with the data from 18O-retinal-H216O and 16O-retinal-H218O incubations to account for nonenzymatic oxygen exchange, our results show that BCO1 incorporates only oxygen from O2 into retinal. Thus, BCO1 is a dioxygenase. 相似文献
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