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Summary Two thymidine kinase isoenzymes, TK 3 and TK 4, from mononuclear leucocytes from a patient with acute monocytic leukemia, were purified and characterized in regard to the molecular weights and kinetic properties.The molecular weights of TK 3 and TK 4 were 60 000 and 45 000, respectively. In the presence of 2 mM ATP, the molecular weight of TK 3 increased to 200 000, whereas the molecular weight of TK 4 was unchanged.Studies of the kinetic properties showed clear differences between TK 3 and TK 4. With thymidine as substrate, TK 3 showed biphasic kinetics with a Km of 22 µM, and TK 4 showed Michaelis-Menten kinetics with a Km of 0.33 µM With ATP as substrate, TK 3 showed Michaelis-Menten kinetics with a Km of 100 µM, and TK 4 showed biphasic kinetics with a Km of 3.5 µM. With dTTP as inhibitor, TK 3 showed cooperative inhibition kinetics, and TK 4 showed non-cooperative competitive inhibition kinetics. The dTTP concentration at 50% inhibition was 75 µM for TK 3 but 380 µM for TK 4.Comparison of the molecular weights and the kinetic properties of TK 3 and TK 4 with the corresponding data previously obtained for TK 1 and TK 2 from normal human lymphocytes indicate the existence of four thymidine kinase isoenzymes in human leucocytes.  相似文献   
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Abstract— Subcellular fractions were isolated from tissue incubated in [3H]choline with or without the addition of 33 mM-KCl. Radioactive and bioassayable ACh were measured in the synaptosomes, synaptosomal cytoplasm and in the vesicles. After incubation with KCI the vesicles, as isolated, contained ACh of a lower specific activity than the cytoplasmic ACh. Therefore the vesicle fraction as isolated does not represent the source of the high specific activity ACh released upon K+ stimulation. However the vesicle fraction is heterogeneous. Most of the bioassayable ACh but little of the radioactive ACh in the vesicles passed through iso-osmotic Sephadex columns. These results raise the question of the existence of vesicles which contain highly radioactive ACh but which lose it during their isolation by current methods. Different possible forms of heterogeneity are discussed.  相似文献   
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Karl Esser: Kryptogamen 1. Cyanobacterien, Algen, Pilze, Flechten. Praktikum und Lehrbuch. Dritte, wesentlich überarbeitete Auflage. 585 S., 300 Abb., Springer‐Verlag Berlin, Heidelberg 2000. Preis: 129.00 DM, ISBN 3–540–66451–3

Jain, S. M., Gupta, R. J., Newton, R. J. (Eds.): Somatic Embryogenesis in Woody Plants. Kluwer Academic Publishers Dordrecht 1999, Vol. 2, 547 S

Vanneste, J. L. (Ed.): FIRE Blight: The Disease and its Causative Agent, Erwinia amylovora. CABI Publishing, CAB International, Oxon, UK, 2000, 370 p., 16 color plates, 38 figures, 25 tables, 6 boxes, Price US$120.00, ISBN 0 85199 294 3

Heitefuss, R. Pflanzenschutz. Grundlagen der praktischen Phytomedi‐zin. 3., neubearbeitete und erweiterte Auflage. Georg Thieme Verlag Stuttgart. 2000, 399 S., 94 Abb., 22 Tab., Preis 49.90 DM, ISBN 313 5133036/650

L. Benzing, Der sachkundige Vorratsschützer. Sachkunde für Anwender und Abgebende von Vorratsschutzmitteln. Agrimedia Spithal, 2000, 158 S., 32 farbige Abb., 14 schwarz ‐ weiße Abb., 23 Tab.. Preis: 78 DM, ISBN 3–86037–115–0  相似文献   
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Numerous studies have demonstrated that fertilization with nutrients such as nitrogen, phosphorus, and potassium increases plant productivity in both natural and managed ecosystems, demonstrating that primary productivity is nutrient limited in most terrestrial ecosystems. In contrast, it has been demonstrated that heterotrophic microbial communities in soil are primarily limited by organic carbon or energy. While this concept of contrasting limitations, that is, microbial carbon and plant nutrient limitation, is based on strong evidence that we review in this paper, it is often ignored in discussions of ecosystem response to global environment changes. The plant‐centric perspective has equated plant nutrient limitations with those of whole ecosystems, thereby ignoring the important role of the heterotrophs responsible for soil decomposition in driving ecosystem carbon storage. To truly integrate carbon and nutrient cycles in ecosystem science, we must account for the fact that while plant productivity may be nutrient limited, the secondary productivity by heterotrophic communities is inherently carbon limited. Ecosystem carbon cycling integrates the independent physiological responses of its individual components, as well as tightly coupled exchanges between autotrophs and heterotrophs. To the extent that the interacting autotrophic and heterotrophic processes are controlled by organisms that are limited by nutrient versus carbon accessibility, respectively, we propose that ecosystems by definition cannot be ‘limited’ by nutrients or carbon alone. Here, we outline how models aimed at predicting non‐steady state ecosystem responses over time can benefit from dissecting ecosystems into the organismal components and their inherent limitations to better represent plant–microbe interactions in coupled carbon and nutrient models.  相似文献   
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Coral Reefs - Scleractinian corals feature both sessile and mobile stages and diverse modes of development. In some cases, development can be reversed. Examples include polyp detachment in response...  相似文献   
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Applied Biochemistry and Microbiology - The efficiency of the binding of tumor-targeting phage particles displaying tumor-targeting peptides, which were obtained with phage-display technology, to...  相似文献   
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