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581.
Regulation of phosphatidylcholine metabolism in mammalian hearts   总被引:1,自引:0,他引:1  
Phosphatidylcholine is the major phospholipid in the mammalian heart. Over 90% of the cardiac phosphatidylcholine is synthesized via the CDP-choline pathway. The rate-limiting step of this pathway is catalyzed by CTP:phosphocholine cytidylyltransferase. Current evidence suggests that phosphatidylcholine biosynthesis in the heart is regulated by the availability of CTP and the modulation of cytidylyltransferase activity. Phosphatidylcholine is degraded mainly by the actions of phospholipase A1 and A2, with the formation of lysophosphatidylcholine. Lysophosphatidylcholine may be further deacylated by lysophospholipase or reacylated back into the parent phospholipid by the action of acyltransferase. The accumulation of lysophosphatidylcholine in the heart may be one of the biochemical factors for the production of cardiac arrhythmias.  相似文献   
582.
A new species of Helichrysum Gaertn., H. orbicularifolium Sümbül, R. S. Göktürk & O. D. Düşen sp. nov. , is described and illustrated. The species is restricted to the south Anatolia Province, Antalya, Turkey, growing in humid calcareous rock crevices and on limestone cliffs. The species is compared with the closely related H. chasmolycicum . © 2003 The Linnean Society of London, Botanical Journal of the Linnean Society , 2003, 141 , 251–254.  相似文献   
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Synopsis Histological studies have demonstrated a significantly richer vascularization of the brain and anterior spinal cord tissues in the mud-burrowing gobies Brachyamblyopus sp. and Trypauchen sp. than three fish species that occupy a variety of non-burrowing habitats. Physico-chemical data from the mud-burrowing gobies' habitat indicate anoxic conditions in the substrate. It is suggested that the enhanced development and distribution of blood capillaries throughout the central nervous system of these two goby species may be a morphological adaptation to their environment. Appropriate physiological studies are needed to clarify this contention.  相似文献   
585.
Lysophosphatidylcholine (lyso-PC) and arachidonate are products of phosphatidylcholine hydrolysis by phospholipase A(2). In this study, the modulation of arachidonate release by exogenous lyso-PC in rat heart myoblastic H9c2 cells was examined. Incubation of H9c2 cells with lyso-PC resulted in an enhanced release of arachidonate in both a time- and dose-dependent fashion. Lyso-PC species containing palmitoyl (C(16:0)) or stearoyl (C(18:0)) groups evoked the highest amount of arachidonate release, while other lysophospholipid species were relatively ineffective. Cells treated with phospholipase A(2) inhibitors resulted in the attenuation of the enhanced arachidonate release in the presence of lyso-PC. Lyso-PC caused the translocation of phospholipase A(2) from the cytosol to the membrane fraction and induced an increase in Ca2+ flux from the medium into the cells. Nimodipine, a specific Ca(2+)-channel blocker, partially attenuated the lyso-PC-induced rise in intracellular Ca2+. Concurrent with Ca2+ influx, lyso-PC caused an enhancement of protein kinase C activity. The lyso-PC-induced arachidonate release was attenuated when cells were pre-incubated with specific protein kinase C and mitogen activated protein kinase kinase inhibitors. Taken together, these results strongly indicate that the lyso-PC-induced increases in levels of intracellular calcium and stimulation of protein kinase C lead to the activation of cytosolic phospholipase A(2) which results in the enhancement of arachidonate release in H9c2 cells.  相似文献   
586.
豚鼠器官中缩醛磷脂公布的研究吕灿群,蔡镇潮(皖南医学院生物化学教研室,芜湖241001)(加拿大玛尼托巴大学医学院生化与分子生物学系)关键词缩醛磷脂;缩醛磷脂酰乙醇胺;薄层层析;豚鼠缩醛磷脂(Plasmalogen)是存在于哺乳动物组织内含有烯醚键的...  相似文献   
587.
In the current study, we generated a pool of Salmonella typhimurium mutants using the Tn10d-cam mini-transposon. This pool of mutants was administered to BALB/c mice through the oral route, and bacteria were recovered from the spleen 3 days post-infection. After three rounds of serial passage, we observed enrichment of two insertion mutants, a yddG insertion and an amyA insertion. These two genes have been implicated in growth on plant products (amyA) and survival in the presence of paraquat (yddG), both of which are natural environments for Salmonella. Thus, while in vivo expression technology has identified S. typhimurium genes that are absolutely necessary for animal infection, other genes involved in vegetative growth also appear to play role in the establishment of pathogenesis.  相似文献   
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