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991.
992.
The residual protonmotive force in mitochondria after an oxygen pulse   总被引:2,自引:0,他引:2  
Both from irreversible thermodynamics and from mass-action kinetics it can be derived that upon anaerobiosis in an oxygen-pulse experiment the protonmotive force across a mitochondrial membrane undergoes a sudden drop. Under representative conditions the protonmotive force after the drop (the residual protonmotive force) is shown to be less than 3 kJ . mol-1 as opposed to steady-state values for the protonmotive force of 19 kJ . mol-1. It is concluded that correction for proton leakage in pulse experiments by back extrapolation underestimate proton leakage. Consequently the observed H+/O stoichiometries must underestimate the true H+/O ratios.  相似文献   
993.
994.
Dimethylallylpyrophosphate:l-tryptophan dimethylallyltransferase (DMAT synthetase), the first pathway-specific enzyme of ergot alkaloid biosynthesis, has been isolated from mycelia of Claviceps sp., strain SD 58, and purified to apparent homogeneity. The enzyme reaction products were identified as l-4-(γ,γ-dimethylallyl)tryptophan and inorganic pyrophosphate. DMAT synthetase is a single subunit protein of molecular weight 70,000–73,000 and has an isoelectric point at pH 5.8. The enzyme is activated by Fe2+, Mg2+, and particularly Ca2+; Km values for l-tryptophan and dimethylallylpyrophosphate were determined to be 0.067 and 0.2 mm, respectively. Kinetic analysis indicated that the DMAT synthetase reaction proceeds by a sequential rather than a ping-pong mechanism.  相似文献   
995.
996.
997.
998.
The Lea-, Leb-, and H-type 1 (LedH)-blood-group-active glycosphingolipids, as well as H-I-type 2 glycolipid, lactotetraosyl ceramide, and neo-lactotetraosyl ceramide were examined by 1H nuclear magnetic resonance at 360 MHz in dimethyl-d6 sulfoxide as solvent. The resonances of almost all protons of the sugar rings were assigned with the aid of spin decoupling and nuclear Overhauser difference spectroscopy. The latter technique was also applied to establish the sequences and sites of glycosidic linkage. This information, combined with the chemical shift-structure correlations established in our previous work, led to an independent identification of those six glycolipids. Type 1 (Galβ1 → 3GlcNAc) and type 2 (Galβ1 → 4GlcNAc) saccharide chains can be distinguished by this approach. Some deviations from additivity in chemical shifts, calculated for oligosaccharides from the data on their constituent sugar residues, furnished information on the conformational changes in crowded glycolipid molecules.  相似文献   
999.
1000.
Abstract DNA-rRNA and DNA-DNA hybridization studies indicate that the classical pyogenic streptococci can be divided into five homology clusters. Based on these studies the term pyogenic streptococci should be confined to the first cluster consisting of serological groups A, A-variant, C, G ('large' colony, type II) and L.
Streptococci of serological groups B and M form the second cluster. The third cluster is composed of streptococci of serological groups R and S and serological groups U, V and P are found in the fourth cluster. The fifth cluster comprises strains of Streptococcus anginosus S. intermedius, Streptococcus MG and serological groups G ('minute' colony, type I) and F (type I). Most of the test strains contain the peptidoglycan type Lys-Ala1–3. Only streptococci of serogroups R and S reveal a directly cross-linked peptidoglycan. Rhamnose was found as characteristic component of all cell wall polysaccharides. The impact of our results on the systematics of classical pyogenic streptococci will be discussed.  相似文献   
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