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Summary Isoelectric focusing (IEF) of peroxidases of different organs and tissues of Nicotiana tabacum L. was performed on thin-layers of Sephadex and polyacrylamide. Isoelectric points (pI's) of peroxidase bands were measured by special electrodes. — The two types of layers showed very similar results. Reproductibility of pI's was better on polyacrylamide. This method is also easier to practise and requires less time than IEF on Sephadex (3 h versus 18). Thus for analytical purposes the acrylamide-technique is preferable, but if it is necessary to regain the separated enzymes it is better to perform IEF on Sephadex. — When IEF-patterns of peroxidase are compared with the disk electrophoresis (DE) patterns of the same tissue, important differences are observed. The 6 bands of GI (fast migrating, anodic group of DE) are reduced to 2 on the strongly acidic side of IEF (independent of the tissue studied). That means only 2 proteins in GI can be separated by pI's of the molecules. Maybe the heterogeneity of GI bands after DE indicates the presence of conformational isomers (conformers). — Because of the reduced number of bands in GI after IEF there is no difference in the patterns of many tissues (flowers, leaves, shoots, pith) as there is after disk electrophoresis. In the case of GII (slow migrating, anodic group of DE) on the other hand, there are always 4 different bands after isoelectric focusing in the lower acid region instead of 3 after disk electrophoresis. Disk electrophoresis of peroxidase-groups separated by isoelectric focusing shows the same patterns as direct disk electrophoresis of the extract. The methods produce no artifacts. —Comparison of these results with the peroxidase-patterns of tobacco found by other workers and by other techniques leads to the conclusion that there exist at least 4 isoenzymes of peroxidase corresponding to the 4 groups GI, GII, GIII, and GIV.
Abkürzungen IEF Isoelektrische Fokussierung - DE Disk-Elektrophorese - pI Isoelektrischer Punkt 相似文献
Abkürzungen IEF Isoelektrische Fokussierung - DE Disk-Elektrophorese - pI Isoelektrischer Punkt 相似文献
75.
Antti Keränen 《Chemistry and physics of lipids》1976,17(1):14-21
The fatty acid and long-chain base composition of five major gangliosides from human stomach and small and large intestine mucosa were analyzed with gas chromatography. All the gangliosides greatly resembled each other in the fatty acid pattern. The main fatty acids were C16:0, C18:0 and C24:0. No hydroxy fatty acids could be detected. In all the gangliosides 4-sphingenine was the predominant long-chain base (70–75%). About 15% of the long-chain bases had 20 carbon atoms in their chain. No trihydroxy long-chain bases could be detected. 相似文献
76.
A.I. Käiväräinen R.S. Nezlin 《Biochemical and biophysical research communications》1976,68(1):270-276
It is found that EPR spectra of immunoglobulins and their subunits spin-labeled by iminoxyl radical 2,2,6,6-tetramethyl-4-amino (N-dichlorotriazine) at pH 7.5 are similar in form and reflect the capability of spin-label to be in two states. Formation of specific complexes of spin-labeled antibodies with antigens is accompanied by increased correlation time of labels as well as by increased fraction of the labels in a more immobilized state. It is shown that splitting spin-labeled light chains to halves results in the label losing its capacity of being in the more rigid microenvironment. EPR spectra are interpreted as due to the relative motion of domains. 相似文献
77.
Summary The charge-pulse technique has been used previously for the study of quasistationary processes in membranes which required only a moderate time resolution. It is shown here that a time resolution of about 400 nsec may be achieved with this technique and that it may be applied to the kinetic analysis of carrier-mediated ion transport. By this method we have studied the transport of alkali ions through optically black monoolein membranes in the presence of the ion carrier valinomycin. All three relaxation processes that are predicted by theory have been resolved. From the relaxation times and the relaxation amplitudes the rate constants for the association (k
R
) and the dissociation (k
D
) of the ioncarrier complex, as well as the translocation rate constants of the complex (k
MS
) and the free carrier (k
S
) could be obtained. For 1m Rb+ at 25° C the values arek
R
=3×105
m
–1 sec–1,k
D
=2×105 sec–1,k
MS
=3×105 sec–1,k
S
=4×104 sec–1. The activation energies of the single rate constants which have been estimated from experiments at two different temperatures range between 50 and 90 kJ/mol. 相似文献
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