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881.
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Summary Tuftsin, a physiological tetrapeptide derived from the Fc region of leukophilic IgG possesses a variety of immunopotentiating properties including the ability to act as an immunotherapeutic agent against the experimental tumors, L 1210 leukemia and Cloudman S-91 melanoma. Although the mechanism of action of tuftsin in vivo is not known, several types of leukocytes have been shown to become cytotoxic effector cells following activation with tuftsin. These cells presently include macrophages, natural killer cells, and granulocytes. The possibility that tuftsin can also activate other types of effector cells have not been ruled out. We feel this small peptide has a high potential (largely unrecognized) as an antitumor immunopotentiating agent. It is naturally occurring in man and appears to be relatively non-toxic. Its exact sequence (Thr-lys-Pro-Arg) is known and it can be chemically synthesized. Methods are also available to monitor the levels of tuftsin in body fluids. These properties along with its ability to control infectious disease make this agent one of the more promising immunopotentiators.  相似文献   
884.
A 3,4-dehydroproline analogue of tuftsin (L-Thr-L-Lys-L-Pro-L-Arg) was prepared by the solid phase synthetic method. Following reversed-phase high performance liquid chromatography (HPLC) purification, the analogue was compared to tuftsin for its ability to enhance the chemotactic, bactericidal and phagocytic activities of polymorphonuclear leukocytes (PMN). Both tuftsin and [Δ3-pro3]-tuftsin elicited a similar significant chemotactic effect at a concentration of 10 μg/ml. A slight suppression of the chemotactic activity was observed with tuftsin at 10?3 μg/ml and with [Δ3-pro3]-tuftsin at concentrations of 10?3, 10?2 (significant) and 10?1 μg/ml. Although similar bactericidal activities were observed for both peptides, PMN exposed to [Δ3-pro3]-tuftsin exhibited increased phagocytic indicies 2–4 times that of tuftsin-treated PMN at concentrations of 0.4, 0.6 and 1.0 μg/ml.  相似文献   
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888.
Upon addition of hydroxylamine to chloroplasts or photosystem II preparations, the EPR signal of Z? disappears and a new signal is observed. From its shape and g-value this signal is identified with the oxidized reaction center chlorophyll, P680+. The decay of P680+ occurs with a halftime of ? 200 μs and apparently is the result of a back reaction with the reduced form of the primary acceptor, QA. This mode of hydroxylamine inhibition is reversible. These observations indicate that hydroxylamine, in addition to its well known inhibitory action on the oxygen evolving complex, is also able to disrupt physiological electron flow to P680 itself.  相似文献   
889.
Summary The net uptake of Na, K, Li, and Ca or Mg by excised barley roots was studied from bi-ionic and tri-ionic bentonite suspensions. The net uptake of Li from Li-Ca system progressed linearly with progressive Li levels and was related to the concentration of soluble lithium. Calcium in this system was taken up only at the 100 per cent Ca level. At lower Ca levels calcium was lost from the roots to the suspensions. In K-Mg and Na-Mg systems the net uptake of Na or K by the excised roots was related to the concentration of the cation in the solution phase. Magnesium uptake took place at 80 and 100 per cent Mg levels. It was much less than that of K or Na at similar levels. At lower levels of Mg the roots lost some of their initial Mg contents to the suspensions. In the Na-K-Mg system magnesium was not taken up by the excised roots. Sodium uptake was not practically affected by the Mg level, but K uptake was greatly enhanced by magnesium.  相似文献   
890.
Gerald T. Babcock  Kenneth Sauer 《BBA》1973,325(3):504-519
Linewidth and hyperfine structure measurements of the EPR spectrum of Signal II in spinach chloroplasts show that the signal reflects two alternative states. One state is characterized by a 16-G linewidth and four partially resolved hyperfine components. The other state has 19 G linewidth and five partially resolved hyperfine components. It is possible to interconvert these two states by changing the ionic strength of the chloroplast suspension. Both states of Signal II show similar light-induced increases in dark-adapted chloroplasts and respond to 10-μs white light flashes with identical kinetics.

In chloroplasts at room temperature, Signal II dark decays to 50% of its total light-induced level in about 1 h. Single flashes increase the spin concentration in these aged chloroplasts but with decreased effectiveness compared with fresh, dark-adapted chloroplasts. Carbonyl cyanide-m-chlorophenylhydrazone (CCCP) decreases the decay time of Signal II from hours to seconds without appreciably altering the level of Signal II formed in saturating continuous light. However, both the formation time constant and the extent of Signal II increase stimulated by a single saturating flash are decreased in CCCP-treated chloroplasts.

These results are interpreted in terms of the model, proposed in the preceding paper, in which Signal II is generated by oxidation-reduction reactions on the water side of Photosystem II.  相似文献   

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