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61.
Michael N. Horst 《Journal of comparative physiology. B, Biochemical, systemic, and environmental physiology》1990,159(6):777-788
Summary Then-acetyl-d-glucosamine-1-phosphate: dolichol phosphate transferase fromArtemia has been partially purified and characterized. The enzyme is solubilized from crude microsomes using Triton X-100, and after detergent removal appears to be associated with phospholipids. Using dolichol phosphate and UDP-n-acetyl-d-glucosamine as substrates, the enzyme catalyzes the formation of dolichol-pyrophosphate-n-acetyl-d-glucosamine. the product identity has been verified by TLC and paper chromatography following mild acid hydrolysis. Under the incubation conditions used only one product is made, i.e., Dol-p-p-GlcNAc. The formation of product is linear with increasing amounts of added protein and with time of incubation. The enzyme requires magnesium ions for activity. Activity of the enzyme is stimulated 6-fold by exogenous dolichol phosphate and is also stimulated by added phospholipids, with optimal activity being obtained in the presence of mixtures of phosphatidylcholine and phosphatidylglycerol. Enzymatic activity is not increased upon addition of GDP-mannose or dolichol phosphate mannose. The enzyme is rapidly inactivated by exposure to several detergents, including Triton X-100 and deoxycholate. The activity is inhibited by tunicamycin and by the purified B2 homologue of this antibiotic. Other antibiotic inhibitors such as diumycin and polyoxin D have little effect on the enzyme. Both the microsomal and solubilized enzyme preparations are inactivated by 70% upon treatment with phospholipase A2; activity may be restored by addition of phospholipids. Following hydrophobic interaction chromatography on Phenyl Sepharose, gel filtration chromatography on Sepharose CL-4B indicated that the enzyme, purified 81-fold, contained phophatidylcholine and phosphatidyl-ethanolamine.Abbreviations SDS
sodium dodecyl sulfate
- PMSF
phenyl methanesulfonylfluoride
- HEPES
4-(2-hydroxyethyl)-1-piperazineethane sulfonic acid
- GlcNAc
N-acetyl-d-glucosamine
- Dol-PP-GlcNAc
dolichol pyrophosphate N-acetyl-d-glucosamine
- Dol-P-man
dolichol-phosphate-mannose
- Dol-PP- (GlcNAc)2
dolichol-pyrophosphate-di-N- acetylchitobiose
- DMSO
dimethylsulfoxide
- C:M (2:1)
chloroform:methanol (2:1)
- C:M:W (10:10:3)
chloroform:methanol:water (10:10:3)
- GlcNAc-1-P
N-acetyl-d-glucosamine-1-phosphate
- Dol-P
dolichol phosphate
- EGTA
ethylene glycol bis (b-aminoethyl ether)-NNNN tetraacetic acid 相似文献
62.
63.
64.
Axel Kölling Carmen Maldonado Flavio Ojeda Horst A. Diehl 《Radiation and environmental biophysics》1994,33(4):303-313
A brief literature review shows that ionizing radiation in biological membranes and in pure lipid membranes causes malondialdehyde formation, indicating lipid peroxidation processes. With respect to membrane fluidization by ionizing radiation, in pure lipid membranes rigidization effects are always reported, whereas contradictory results exist for biological membranes. Starting from the assumption that membrane proteins at least partly compensate for radiation effects leading to a rigidization of membrane lipid regions, pig liver microsomes, as a representative protein-rich intracellular membrane system, were irradiated with X-rays or UV-C with doses up to 120 Gy at a dose rate of 0.67 Gy min–1 and up to 0.73 J cm–2 at an exposure rate of 16.2 mJ cm–2 min–1, respectively. For both irradiation types a weak but significant positive correlation between malondialdehyde formation and membrane fluidity is revealed throughout the applied dose ranges. We conclude that the membraneous protein lipid interface increases its fluidity under radiation conditions. Also, thymocyte ghosts showed an increased fluidity after X-ray irradiation. Fluidity measurements were performed by the pyrene excimer method. 相似文献
65.
66.
The synthesis of 5-aminolevulinic acid commences with the ligation of glutamate to a specific tRNAGlu by a glutamyl-tRNA synthetase (E.C. 6.1.1.17) (Huang et al., 1984, Science 225, 1482–1484). The synthetase from the yellow pigment mutant C-2A of the unicellular green alga Scenedesmus obliquus was purified by sequential column chromatography on Sephacryl S-300, Blue Sepharose, phosphocellulose P11 and by fast protein liquid chromatography (FPLC) on Mono Q. After denaturing sodium dodecylsulfate (SDS)-gel electrophoresis the purified enzyme preparation revealed a single protein band with a molecular mass of 55 kDa, proving the apparent homogeneity of the glutamyl-tRNA synthetase. A molecular mass of 105 ± 10 kDa was determined for the native protein by chromatography on Sephadex G-150. From these data it can be concluded that the glutamyl-tRNA synthetase from S. obliquus is a homodimer. The purified protein is active within a pH range from 7.0 to 9.0 with a maximum activity at pH 8.0. Kinetics for the binding of glutamate to the tRNA, performed with highly purified enzyme preparations, showed a K
m value of 2.3 M ± 0.3 for glutamate.Abbreviations ALA
5-aminolevulinic acid
- FPLC
fast protein liquid chromatography
- Glu
glutamate
- Hepes
N-2-hydroxyethylpiperazine-N-2-ethanesulfonic acid
- SDS
sodium dodecylsulfate
- Tricine
N-[2-hydroxy-1,1-bis(hydroxymethyl)ethyl]-glycine
This work was supported by a grant of the Deutsche Forschungsgemeinschaft. U.C. Vothknecht is grateful for a Nachwuchs-förderungsstipendium des Landes Hessen. The authors want to thank Ms. B. Böhm, J. Gade and K. Eckhardt for skillful technical assistance. The authors also want to thank Dr. C.G. Kannangara (Carlsberg Institute, Kopenhagen, Denmark) for the donation of tRNA from barley and Dr. D. Jahn (FB Biology/Microbiology, Philipps-University, Marburg, FRG) for the tRNAGlufrom E. coli. 相似文献
67.
The influence of two enzyme solutions, differing only in the presence or absence of Macerozyme, on protoplast yield, colony formation and transient GUS (-glucuronidase) activity was studied. For all parameters tested the presence of Macerozyme during protoplast isolation had a negative influence. Using an enzyme solution without Macerozyme suspension aggregates gave up to 4.4 times higher protoplast yield and plating efficiencies were increased up to 10-fold. Further, protoplasts isolated without macerozyme showed a 5.2-fold higher GUS activity in transient gene expression. Apart from the presence of Macerozyme, longer incubation (3 compared with 1.5 h) of cell aggregates in the enzyme solution also had a negative effect on transient transformation efficiency. These data demonstrate that protoplast isolation conditions have a profound effect on transient gene expression and it is proposed that these factors will also influence stable transformation efficiency.Abbreviations CP
cellulase pectolyase
- CPM
cellulase pectolyase Macerozyme
- 2,4-d
2,4-dichlorophenoxyacetic acid 相似文献
68.
Summary Fructokinase negativeZymomonas mobilis UQM 2864, was co-immobilised with invertase in alginate and incubated on sucrose-based media in batch and fedbatch culture. The highest fructose concentration achieved was 138 g/l using fed-batch cultivation with sugar-cane syrup-simultaneously producing 79.9 g/l or 10.1% (v/v) ethanol in less than 24 hours. The ethanol and fructose yields were 95 and 84% respectively. Co-immobilisation resulted in faster fermentation times, particularly for the batch fermentations, and complete utilisation of substrate. 相似文献
69.
70.
Alpha-1-antitrypsin (-1-AT) deficiency can lead to juvenile liver cirrhosis and lung emphysema in adulthood. The deficiency Z allele is caused by a base transition. Temperature gradient gel electrophoresis (TGGE) and hybrid isoelectric focusing (HIEF) were used to detect carriers of the Z mutation of the -1-AT gene. The resulting data were compared. To verify carriers at the sequence level, a manual nonradioactive sequencing strategy was established. Among our sample of carriers of the Z mutation, two were not detected by HIEF that could be identified by TGGE. DNA of all TGGE identified individuals harboring the Z mutation of the -1-AT gene were sequenced nonradioactively. All carriers harbored a G to A transition at position 11.940. This mutation is described to cause the altered protein. 相似文献