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Glycerol (30%) inhibited or delayed the adsorption of Shigella bacteriophage on its host organism, S. flexneri II; glycerol also inhibited or delayed the burst of phage, whether or not adsorption was carried out in the presence of glycerol. Studies of the mechanisms of these effects showed that viscosity and osmotic shock probably were not responsible for either phenomenon. The inhibition of adsorption, however, was proportional to the concentration of glycerol, and appeared to be a function of the hydroxyl groups on the glycerol molecule. The inhibition of burst seemed to be related to the osmotic pressure outside the bacterial cells.  相似文献   
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Kuo, M. J. (Iowa State University, Ames), and P. A. Hartman. Isolation of amylolytic strains of Thermoactinomyces vulgaris and production of thermophilic actinomycete amylases. J. Bacteriol. 92:723-726. 1966.-Of 759 isolates obtained from dung, compost, and soil samples, a culture of Thermoactinomyces vulgaris (strain 5) was selected for further study on the basis of quantities of amylase produced in synthetic and nonsynthetic media, rapid growth and sporulation, culture stability upon prolonged storage at 5 C, and growth temperature range. Inoculum preparation, temperature optimum for amylase formation, and the effects of various kinds and levels of carbon and nitrogen sources on amylase production were studied with T. vulgaris strain 5. An optimal procedure for production of T. vulgaris amylases is proposed.  相似文献   
76.
用免疫荧光单克隆抗体对脊髓灰质炎病毒抗原表位的分析   总被引:1,自引:0,他引:1  
用间接免疫荧光与中和试验筛选出来的抗脊髓灰质炎2型与3型不同毒株的12个单克隆抗体,其中3个仅有免疫荧光活性,9个具有中和与免疫荧光活性。用免疫荧光活性的单克隆抗体进行试验,发现它们在识别特异性抗原表位方面与中和性单克隆抗体相似,显示出株特异的、几个毒株共同特异的或型特异的抗原表位。根据表位分布关系及特征,可以用来鉴别型内毒株的特征、毒株的抗原分析、抗原变异的研究以及疫苗相关病例的鉴别。所得结果与中和性单克抗隆抗体及T1-寡核苷酸指纹图谱分析一致。而免疫荧光单克隆抗体识别抗原表位的活性范围比中和性单克隆抗体更广。另外还发现某些兼有荧光与中和两活性的同一个单克隆抗体,用不同方法(IF与NT)进行试验时,与相同毒株出现不同表位反应,这点是值得引起注意需待进一步证实的重要问题。  相似文献   
77.
The yeast SOC8-1 gene was originally identified by partial complementation of cdc8 mutant strains. We have carried out Bal31 deletion analysis of the SOC8-1 gene to define the minimal size which is required for the complementation of the cdc8 mutation. When the SOC8-1 gene is cloned in a multicopy plasmid, it enables temperature-resistant growth in the cdc8 mutant strain, while the SOC8-1 gene in a single copy plasmid does not. Thus, its suppression of the cdc8 mutant is dosage dependent. The high copy number vector carrying the SOC8-1 gene can complement five different cdc8 alleles, indicating that the suppression is not allele specific. Since CDC8 encodes thymidylate kinase, cells bearing a high copy number plasmid containing SOC8-1 gene were tested for the ability to phosphorylate several nucleoside monophosphates, including UMP, GMP and dTMP. Significantly increased phosphorylation activity was observed, suggesting that SOC8-1 encodes a nucleotide kinase. Both restriction enzyme analysis of the SOC8-1 gene and partial purification of the overproduced kinase in SOC8-1 overproducing strains suggest that SOC8-1 may be allelic with URA6. Consistent with these results, both SOC8-1 and URA6 are located on chromosome XI. Thus, one possible suppression mechanism is that SOC8-1 may provide a trans-acting dTMP kinase activity, bypassing the cdc8 gene defect.  相似文献   
78.
Single crystals of recombinant Escherichia coli ornithine transcarbamoylase suitable for x-ray analysis have been grown from polyethylene glycol and 2-methyl-2,4-pentanediol. The space group has been determined as P3(1) or P3(2), with one protein trimer of three identical 36.8-kDa subunits in the asymmetric unit. The unit cell dimensions are a = b = 105.1 A and c = 87.8 A. The crystals diffract well to 3-A resolution and are quite resistant to radiation damage. Single crystals have also been grown of a genetically engineered site-specific mutant for which the replacement of an arginine (Arg-57) to a glycine has been shown to not only drastically affect the enzyme activity but also its kinetic mechanism (Kuo, L. C., Miller, A. W., Lee, S., and Kozuma, C. (1988) Biochemistry 27, 8823-8832). The crystals of the Arg-57----Gly mutant protein are isomorphous to those of the wild type. Crystal soaking experiments using both wild-type and Arg-57----Gly crystals in the presence of various ligands have provided evidence of specific conformational changes upon substrate binding which supports our previous kinetic and spectroscopic observations.  相似文献   
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S. Kuo 《Plant and Soil》1990,126(2):177-186
Zinc sorption by soils can greatly affect its availability to plants. This study was conducted to determine the relationship between the Zn sorption capacity and plant Zn accumulation in five sludge-amended soils using Swiss chard (Beta vulgaris L.) as an indicator plant. Zinc sorption as a function of Zn concentration and pH was determined for the soils which received no sludge amendment; also DTPA (diethylenetriaminepentaacetic acid) extractable Zn was determined in all soils. Whereas the responses of DTPA-Zn and plant Zn to pH and the quantities of Zn sorbed were similar, the logarithm of DTPA-Zn accounted for only 82% of the variability in the logarithm of Zn accumulation by the plants. The variability was better explained when pH was included with DTPA-Zn in stepwise multiple regressions. The Zn buffering capacity, defined as the ratio of the change in quantity of Zn sorbed ( Zns) to the change in Zn solution concentration (Zn1) (or Zns/Zn1), and the estimated quantity of Zn sorbed were used as a basis to measure Zn intensity. Zinc intensity, which reflects Zn solution concentration, was the predominant factor controlling Zn accumulation by Swiss chard, judging from the good fit of the values of both parameters to the Michaelis-Menten equation. The maximum Zn accumulation was approximately 9 mmol kg–1.Scientific paper no. 8901-29, Department of Agronomy and Soils, College of Agriculture and Home Economics Research Center. Washington State University, Pullman, WA 99164, USA.Scientific paper no. 8901-29, Department of Agronomy and Soils, College of Agriculture and Home Economics Research Center. Washington State University, Pullman, WA 99164, USA.  相似文献   
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