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81.
82.
S L Rosenberg 《Journal of bacteriology》1971,108(3):1257-1269
The pathway of mandelate metabolism in Pseudomonas aeruginosa is composed of the following steps: l(+)-mandelate --> benzoylformate --> benzaldehyde --> benzoate. These three steps are unique to mandelate oxidation; the benzoate formed is further metabolized via the beta-ketoadipate pathway. The first enzyme, l(+)-mandelate dehydrogenase, is induced by its substrate. The second and third enzymes, benzoylformate decarboxylase and benzaldehyde dehydrogenase, are both induced by benzoylformate. The same benzaldehyde dehydrogenase, or one very similar to it, is also induced by beta-ketoadipate, an intermediate in the subsequent metabolism of benzoate. This dehydrogenase may also be induced by adipate or a metabolite of adipate. These conclusions have been drawn from the physiological and genetic properties of wild-type P. aeruginosa strains and from the study of mutants lacking the second and third enzyme activities. 相似文献
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Nicotinamide adenine dinucleotide levels in cells of developing chick limbs: possible control of muscle and cartilage development 总被引:2,自引:0,他引:2
The studies reported here show that NAD+ levels are low in chick limbs which have not yet attained the stage of cellular commitment, that these low levels persist during a time period when major chondrogenic commitment and expression occur, that beyond this stage the NAD+ levels in chick limbs rise dramatically and continuously, corresponding to the period of major myogenic development, and that developing cultures of stage 24 mesodermal cells seem to mimic these in vivo events in that myogenic cells are observed when NAD+ levels are high and chondrogenic cells are observed when NAD+ levels are low. These observations are consistent with the hypothesis that pyridine nucleotides may play some role in the control of muscle and cartilage development in embryonic chick limbs. 相似文献
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Shear and the Melting of DNA: An Especially Sensitive Portion of the Escherichia coli Genome 下载免费PDF全文
The melting point of DNA is shown to be a function of shear stress. The higher the molecular weight of the DNA, the further its melting point is lowered by a given shear rate. During lysis of E. coli, a part of the DNA is especially shear sensitive, so that its melting curve in the presence of shear shows a low-melting region prior to the main transition. Lysis and dilution of the cell contents destroys the extra shear sensitivity, perhaps because the DNA dissociates from the cell membrane or from some other large subcellular structure. Such a structure would impart increased shear sensitivity to the associated region of the genome. 相似文献
87.
Deoxyribonucleic Acid Synthesis During Microcyst Germination in Myxococcus xanthus 总被引:17,自引:15,他引:2 下载免费PDF全文
Deoxyribonucleic acid (DNA) synthesis was measured during microcyst germination in Myxococcus xanthus by radioactive thymidine incorporation, autoradiography, and chemical analysis. Microcysts contained an average of 6.6 conserved units of DNA, corresponding to 3 to 4 chromosomes per cell. Correlation of the DNA content and chromosome number of microcysts indicated that the molecular weight of the nonreplicating M. xanthus chromosome is 4.9 x 10(9) daltons. DNA synthesis was initiated 3.5 to 4 hr after induction of germination. From 4 to 6 hr, the rate of synthesis was constant and the accumulation was linear. After a lag period (6 to 6.5 hr), the rate of DNA synthesis increased, reaching a second plateau at 9 hr. From 9 to 11 hr, the rate was again constant and the accumulation was linear. Cellular division during germination showed an unusual kind of synchrony. A model is presented that accounts for chromosomal replication and cell division during microcyst germination. 相似文献
88.
Comparison of the requirements for ribonucleic acid synthesis with the requirements for deoxyribonucleic acid synthesis in animal tissues 总被引:2,自引:0,他引:2
Ribonucleic acid polymerase and deoxyribonucleic acid polymerase have been partially purified from bovine lymphosarcoma, lymph node, and thymus. An examination of the deoxyribonucleic acid requirements of the two enzymes indicates that “native” deoxyribonucleic acid is the preferred template for ribonucleic acid synthesis; heat-denatured deoxyribonucleic acid is considerably less active. The primer requirements for deoxyribonucleic acid synthesis differ: “native” deoxyribonucleic acid is usually inactive, while denatured deoxyribonucleic acid is active. The two enzymes also differ in pH optima and in their requirements for metal cofactors. 相似文献
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