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61.
Gerald V. Stokes 《Journal of bacteriology》1974,118(2):616-620
L cells (mouse fibroblasts) infected with Chlamydia psittaci (strain meningopneumonitis) produced a proteinase differing in solubility in ammonium sulfate from the proteinase of uninfected L cells. Synthesis of the enzyme was inhibited by chloramphenicol but not by cycloheximide, indicating that the new proteinase in infected L cells was synthesized by Chlamydia psittaci. The chlamydial proteinase had no demonstrable ion requirements and was not inhibited by a variety of inhibitors of proteinase activity. Gel filtration experiments suggested a molecular weight of approximately 250,000. The proteinase appeared in infected L cells at the time host cells began to die and the large chlamydial cells began to reorganize into small ones. Some possible functions for the chlamydial proteinase were proposed. 相似文献
62.
David E. Scott David H. Van Dyke Willis K. Paull Gerald P. Kozlowski 《Cell and tissue research》1974,150(3):389-397
Summary The ultrastructural organization of the human fetal choroid plexus was assessed with scanning electron microscopy. The membranous modifications of choroidal ependymal cells differ remarkably between 11 and 20 weeks of intrauterine development and suggest a variable functional capacity at different times of ontogenesis. Based upon existing data coupled with the ultra-architectural organization of cilia, clavate and linear microvilli are seen with scanning electron microscopy, a multiple functional role is hypothesized for choroidal ependymal cells.supported by USPH grant NS 08171.career development awardee K04 GM 70001 相似文献
63.
Distribution and metabolism of phenylalanine and tyrosine during tularaemia in the rat (Short Communication)
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Michael C. Powanda Richard E. Dinterman Robert W. Wannemacher Jr. Gerald D. Herbrandson 《The Biochemical journal》1974,144(1):173-176
Tularaemia in rats causes a doubling of the serum phenylalanine/tyrosine ratio and a more than twofold increase in muscle phenylalanine which cannot be accounted for by decreased hepatic phenylalanine hydroxylase (EC 1.14.16.1) activity, but appear to result from a generalized movement of amino acids from muscle to liver during infection. 相似文献
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1. In a study of the metabolism of l-[(35)S]methionine in vivo, the labelled sulphur compounds of rat liver and brain were separated first by ion-exchange chromatography into two fractions containing (i) free sulphur amino acids such as methionine, cystathionine, cyst(e)ine and homocyst(e)ine and (ii) glutathione. 2. Two-dimensional paper chromatography with butan-1-ol-acetic acid or propionic acid-water in the first direction and 80% acetone or acetone-ethyl methyl ketone-water in the second direction was found superior to other solvent systems for separating the sulphur amino acids. 3. At 10min. after injection of [(35)S]methionine only a small part of the (35)S was found combined in free methionine or other free sulphur amino acids. 4. Evidence was obtained of the presence of adenosyl[(35)S]methionine and adenosyl[(35)S]homocysteine in perchloric acid extracts of rat liver and brain. 5. The trans-sulphuration pathway was active in brain as well as in liver. 相似文献
66.
C. D. Cook F. Geller G. B. Hutchison P. Gerald F. H. Allen 《American journal of human genetics》1962,14(3):290-294
67.
Gerald Houghton 《Bulletin of mathematical biology》1966,28(4):487-500
A two-dimensional nonlinear integro-differential equation with time-varying coefficients describing the behavior of the fluttering
wing-body systems typical of natural flight mechanisms has been deduced from the Navier-Stokes equation which generalizes
local pressure and velocity distributions in the externally oscillating air field. The resulting equation for the wing forces
is combined with an analogous expression for the forces of gravitation and acceleration associated with the body. The air
acceleration force, not previously considered in bio-physical models of insect and bird flight, is shown to arise from a formal
analysis of unsteady or time-varying contributions to the velocity field, while the square form of the conventional steady
state aerodynamic forces is derived from the intertial terms in the Navier-Stokes equation with the aid of the approximations
of Newtonian impact theory. Previous calculations (Houghton, 1964) have indicated that the contribution to gravitational stability
of air acceleration and aerodynamic life are roughly in the ratio of 3:1. 相似文献
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