Cloned structural gene (ompA) for an integral outer membrane protein of Escherichia coli K-12: localization on hybrid plasmid pTU100 and expression of a fragment of the gene.
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Biomedical subjects
Publications and source records attributed to E Beck.
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Hamamelosekinase (ATP:hamamelose 2(1)-phosphotransferase) was purified from a crude extract of Kluyvera citrophila 627 (Enterobacteriaeceae) which has been grown on D-hamamelose. Ammonium-sulfate fractionation and twofold chromatography on DEAE-cellulose resulted in a 51-fold purification of the enzyme. Neither glucosekinase nor significant ATPase activity could be detected in the pure preparation. Besides D-hamamelose only D-hamamelitol was utilized as a substrate; however, the latter was phosphorylated at a very low rate. The molecular weight of the enzyme as estimated by gel chromatography is 21 000. The Km values for hamamelose and ATP were 3 mM nd 2.5 mM, respectively. The pH optimum was found at 7.5. In contrast to hexokinase, purified hamamelosekinase is very labile and could only be stabilized by addition of its substrate D-hamamelose. The most unusual property with respect to yeast hexokinase is a pronounced substrate inhibiton by hamamelose (> 5mM) and ATP (> 7mM), respectively, which could be interpreted as due to an economic utilization of the nutrient. Hamamelosekinase as well as glucosekinase are inducible by growing the microorganisms on the corresponding monosaccharides.
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Washed lamellae from isolated spinach chloroplasts exhibited peroxidative activity with 3,3'-diaminobenzidine or ascorbate as electron donors. By heat treatment or by incubation of the chloroplasts with pronase a heat-labile enzymic activity (system A) and a heat-stable non-enzymic peroxidative activity (system B) could be differentiated. System A is membrane-bound, reacts with 3,3'-diaminobenzidine and with ascorbate as electron donors, shows a sharp pH optimum between 7.5 and 8.0 with both substrates and is inhibited competitively by cyanide. The heat-stable factor can be extracted from the chloroplast lamellae by heat treatment, reacts only with ascorbate as electron donor, shows increasing activity with higher pH values but no optimum and is not inhibited by cyanide. Both peroxidative systems in connection with a relatively high concentration of ascorbate in chloroplasts should represent an important tool for the detoxification of H2O2 which is produced in these organelles by photosynthetic O2 reduction.
The recombinant plasmid pRK101 contains a DNA fragment which carries the complete replication origin of the antibiotic resistance factor R1drd-19 inserted into the vector plasmid pBR322. In a spontaneously arising mutant of this plasmid (pRK103) a deletion of about 215 base pairs (bp) has been detected by heteroduplex analysis and mapping with restriction endonucleases. Essential parts of the replication origin must be located in the deleted sequence. The deletion mutant pRK103, in contrast to its parent plasmid pRK101 is not replicated under the control of the R1 replicon, even when the R1 factor or copy mutants of it are present within the same cell. These latter plasmids can complement a plasmid-specific protein not coded by pRK101 but essential for R1-directed replication. The nucleotide sequence of a 252 bp HpaII fragment covering about 170--200 bp of the deletion was determined. This piece of DNA is rich in G and C and contains a series of small palindromes, symmetrically arranged repeated sequences and short selfcomplementary structures which may be of significance for the initiation of the DNA replication. The possiblity that the sequenced DNA fragment comprises a major part of the replication origin of R1drd-19 is discussed.
The origin of replication, oriC, of the Escherichia coli chromosome was mapped within a DNA segment of 422 base pairs. The nucleotide sequence of this segment was determined. The source of DNA for the sequence analysis was a minichromosome constructed in vivo, consisting exclusively of chromosomal DNA and a minichromosome constructed by cloning in vitro. The nucleotide sequence of the replication origin is characterized by a high degree of repetitiveness due to both inverted and direct repeats. Sequence homologies were found between portions of the replication origins of E. coli and phages lambda and G4. This suggests similarities in some steps in the initiation of replication of the different replicons.
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With intact spinach (Spinacia oleracea L. cv. Vital R) chloroplasts, the activity of the NADP-dependent malate dehydrogenase after activation by light was 30 micromoles of malate formed per milligram of chlorophyll per hour; an identical rate of O(2) evolution was obtained upon oxaloacetate reduction by the intact plastids. However, when the activity of NADP-dependent malate dehydrogenase was measured subsequently to maximal activation of the enzyme by dithiothreitol (DTT) an average rate of 113 micromoles per milligram of chlorophyll per hour was obtained. When membranes and stroma were separated after osmotic disruption of the chloroplasts, 28% of NADP-dependent malate dehydrogenase activity inducible by DTT was found with the membranes and 72% was found in the stromal fraction. The membrane-associated portion of the enzyme corresponds well with the activity achieved after activation by light. About 64% of an activator system was found to be associated also with the membrane fraction. Washing the membranes with buffer removed more activator than enzyme. However, both were removed almost completely by ethylenediaminetetraacetate. It was concluded that both a portion of the enzyme and the total activator system are associated with the chloroplast membranes in vivo and that the activator is more loosely bound than the enzyme. A model describing the partial activation of chloroplastic NADP-dependent malate dehydrogenase by light and the total activation by DTT is presented.
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Research and surveillance programs relating to the occurrence and distribution of western equine encephalomyelitis virus in Florida, conducted between 1955 and 1976, suggest that the virus is (1) an endemic arbordae, (2) transmitted in a continuous cycle throughout the year by Culiseta melanura mosquitoes, and (3) restricted to fresh water swamps and waterways in central, north, and northwest Florida.
An RNA-polymerase-protected DNA fragment of 125 nucleotides from the origin of single-strand to double-strand replication of bacteriophage fd (ori-DNA) was located on the physical map of the phage genome. A stretch of 187 base pairs of DNA including the ori-DNA was sequenced. This DNA segment contains regions with a highly asymmetric pyrimidine/purine distribution next to regions with 2-fold symmetry that form stable hairpin structures in the viral DNA strand.
Phage fd DNA complexed with DNA binding protein I was used by Escherichia coli RNA polymerase (nucleoside triphosphate:RNA nucleotidyltransferase, EC 2.7.7.6) to synthesize an RNA at the origin of single strand to double strand replication. The isolated ori-RNA gave a simple fingerprint after nucleolytic digestion and has a length of about 30 nucleotides. The characterization of the oligonucleotides from the nuclease digest and the extension of the ori-RNA with DNA polymerase I and subsequent restriction of the DNA gave its exact localization in the fd genome, and its total sequence was deduced from the known DNA sequence in this region.
The sequence of the 6,408 nucleotides of bacteriophage fd DNA has been determined. This allows to deduce the exact organisation of the filamentous phage genome and provides easy access to DNA segments of known structure and function.
Under non optimal conditions- either with limiting substrate concentrations (1) or at low pH (2)- RNA polymerase of Escherichia coli synthesizes very short RNA chains. By sequencing one RNA species synthesized at pH 5.8 upon T7 DNA we were able to demonstrate that under these conditions transcription is initiated at a normal promoter site (here A1) but however is terminated soon afterwards at specific artificial sites not used in vivo.
Chloroplasts isolated from spinach (Spinacia oleracea L., cv. vital(R)) plants grown under controlled light/dark and temperature regimes, contained the phosphorolytic and amylolytic pathways for starch breakdown. The latter consists at least of alpha- and beta-amylase and maltase. Only low amylolytic activity was observed in chloroplasts isolated during the light phase. In chloroplasts prepared during the dark phase, this activity was almost twice as high. These diurnal oscillations of the amylolytic activity were maintained when the plants were kept in prolonged darkness or continuous light. The amylolytic system exhibited a sharp pH optimum between 5.8 and 6.0. Phosphorylase activity, when assayed with saturating concentrations of inorganic phosphate, did not show diurnal fluctuations.
A factor with killing effect at 35 degrees C on Treponema pallidum is shown to be in normal human serum. The activity of this factor is increased by the stabiliser of stored blood.--In the presence of the stabiliser T. pallidum loses its infectivity in human serum at 4 degrees C within 10 hours. The mechanism of the reaction is explained.--Finally it is discussed whether these observations may be helpful in the prevention of transfusion syphilis.