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The enzymatic transamination reactions between aspartic and α-ketoglutaric acid and between aspartic and pyruvic acid were studied in fresh dialysed extracts of young wheat plants cultivated under various trophical conditions, in mineral solution (Knop), in the solution of an soil organic substance (potassium humate) and without nutrients (H2O). Simultaneously, the level of endogenic aspartic acid, glutamic acid and the growth values were determined. The enzymatic reactions were characterized by determining the optimum pH, the time course, and the effect of coenzyme and of inhibitors. The activity of the aspartate-glutamate transaminase from the root system of plants was considerably higher than the activity of the overground organs. The enzymatic activity from both parts of the plant was inversely proportional to the growth rate: intensive growth of the plants from the Knop variant was connected with their low enzymatic activity; the level of endogenic glutamic acid was high. The slow growth of the plants without nutrients was connected with a higher enzymatic activity; the level of endogenic glutamic acid was low. The plants from the potassium humate variant had an intermediate position between these two variants from the point of view of growth as well as from that of enzymatic activity. The plants with insufficient nutrition (slow growth, low level of endogenic glutamic acid) apparently have a low capacity for supplementing the glutamic acid deficit, which is essential for the metabolic processes, by increasing the activity of the reactions leading to glutamic acid synthesis (Asp-Glu) and, on the other hand, by decreasing the reactions utilizing it (Glu-Ala). For wheat plants the active aspartate-glutamate reaction is obviously physiologically more important than the direct reaction glutamate-aspartate and the reaction aspartate-alanine which in all cases had a very low activity.  相似文献   
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Summary The presence of identical groups of parallel microfilaments in the nucleus and in the cytoplasm of the rat epiphyseal chief cells are described. The areas of microfilaments are not surrounded by any membranes and the single filaments are about 70–80 Å in diameter and vary largely in length. At higher magnification the filaments are shown to be composed of an inner light and outer dark zone. Since the filaments in the nucleus and in the cytoplasm are morphologically identical, they are suggested to originate in the same part of the cell and thus to be involved in the nucleo-cytoplasmic interaction.
Zusammenfassung Die Anwesenheit von gleichartigen Gruppen paralleler Mikrofilamente in Kern und Zytoplasma von Haupt-Zellen in der Rattenepiphyse wird beschrieben. Die Mikrofilamentareale werden nicht von Membranen umgeben; die einzelnen Filamente weisen einen Durchmesser von etwa 70–80 A auf und variieren stark in der Länge.Bei starker Vergrößerung zeigt sich, daß die Filamente aus einem inneren hellen und äußeren dunklen Streifen zusammengesetzt sind.Da die Filamente im Kern und im Zytoplasma morphologisch identisch sind, kann man fragen, ob sie am selben Ort in der Zelle entstehen und folglich in der Wechselwirkung von Kern und Zytoplasma eine Rolle spielen.
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1. The kidney of frog and black sculpin appeared to be much less sensitive to the toxic action of CP in comparison with rat and pigeon. 2. The impairment of renal function after CP administration resulted in increased serum urea in rat, uric acid in pigeon and magnesium in black sculpin. 3. Kidney swelling is important feature of CP nephrotoxicity in rat and pigeon but not in frog and fish. 4. Pretreatment with choline chloride, PAH, furosemide and ethacrynic acid reduced the nephrotoxic action of CP in rat but did not prevent the accumulation of platinum in renal tissue which appeared to be a function of the dose injected to investigated animals.  相似文献   
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