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131.
确定了在pH 5.2到8.7和温度22°到45℃时钼铁蛋白和铁蛋白的稳定性。按logKm和logV分别对pH作图,得到下列参数。于30℃在酸性侧,乙炔络合常数PK_b(C_2H_2)=6.43—6.50,乙炔催化常数pK_b′(C_2H_2)=4.78,在碱性侧乙炔络合常数pK_a(C_2H_2)=7.42—7.55,乙炔催化常数pK_a′(C_2H_2)=7.88—8.29,氮络合常数pK_a(N_2)=7.75—7.9及氮催化常数pK_a′(N_2)=8.08—8.68。既然pK_a与pK_b或pK_a′与pK_b′二者间隔小于3.5个单位,又按V/Km及V′对pH作图,其结果为pKb(C_2H_2)=6.28pK_a(C_2H_2)=7.68和pK_b′(C_2H_2)=5.53和pK_a′(C_2H_2)=8.93。将不同温度下的pK_b或pK_a分别对各自温度的倒数作图,其热力学数据为由pH 5.7到7.3范围内,质子移变基团的解离热⊿H(ioh)=7742卡/克分子,相应的pK_b(C_2H_2)=6.16—6.36;由pH 7.3到8.4范围内⊿H_(ion)=6983卡/克分子,相应的pK_a=8.24—8.44。这些数据指出固氮酶钼铁蛋白络合乙炔的功能基团可能具有咪唑基·巯基和氨基相类似的结构,这种推测正在用化学修饰的方法加以验证。 相似文献
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从乙型肝炎病毒表面抗原阳性母亲流产的胎儿查出乙型肝炎病毒标志 总被引:7,自引:0,他引:7
应用Southern blot杂交试验检测HBsAg及HBeAg均阳性母亲流产的9例胎儿肝细胞中HBV DNA的存在状态,并与其HBV血清学、免疫电镜及肝脏免疫组织化学的结果相比较。结果在3例胎肝高分子DNA中检出了整合的HBV DNA顺序,且此3例HBV DNA整合到胎肝细胞基因组并无特定部位,提示为随机整合。3例中2例的血清及肝匀浆都检出HBsAg颗粒,其胎肝细胞胞浆HBsAg也阳性;另1例受HBV感染的唯一标志是在胎肝细胞中存在着整合的HBVDNA。此外,另1例则仅胎肝细胞中HBsAg阳性而无整合的HBV DNA。在胎肝细胞中检出整合的HBV DNA进一步证实HBV子宫内传播途径的存在。 相似文献
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<正> 本文报道以pAT153质粒为载体克隆的adr亚型乙型肝炎病毒(HBV)全基因的限制性内切酶图谱。重组质粒已命名为pHBV-NCl。重组质粒的提取和酶解采用常规方法。限制性内切酶为Bio-Labs公司产品。用Sepharcry S-1000纯化得到的质粒,经电泳鉴定都是完整的超螺旋DNA。经过鉴定其BamHⅠ、XhoⅠ、XbaⅠ、SstⅡ、SphⅠ、BglⅠ、BglⅡ、BstEⅡ、AceⅠ、AvaⅠ、HincⅡ、HpaⅠ等12种酶的21个切口已被定位。其中XhoⅠ、XbaⅠ、SstⅡ、 相似文献
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在中国丰收11号大豆根瘤侵染细胞中,我们发现了一种电子密度很高,体积很大,形状为圆形或近似圆形,外面没有界膜,常位于胞间隙附近的特殊的细胞质内含物。高尔基体及其小泡,丰富的粗糙型内质网和核糖体常在它的附近,其中一些核糖体正沉积在它的表面。它主要是由核糖体凝聚而成,高尔基体和内质网在它的形成中也起了一定作用。它的内部含有颗粒状,纤维状,泡状和管状物质。它的出现似乎与侵染细胞固氮有关。 相似文献
139.
Y. W. Han D. J. Gallagher A. G. Wilfred 《Journal of industrial microbiology & biotechnology》1987,2(4):195-200
Summary Phytase production byAspergillus ficuum was studied using solid state cultivation on several cereal grains and legume seeds. The microbial phytase was used to hydrolyze the phytate in soybean meal and cotton seed meal. Wheat bran, soybean meal, cottonseed meal and corn meal supported good fungal growth and yielded a high level of phytase when an adequate amount of moisture was present. The level of phytase production on solid substrate was higher than that obtained by submerged liquid fermentation. Higher levels of phosphorus (more than 10 mg Pi/100 g substrate) in the growth medium (static culture) inhibited phytase synthesis, and the degree of phosphorus inhibition was less apparent in semisolid medium than in liquid medium. A static cultivation on semisolid substrate produced a higher level of phytase (2-20-fold) than that obtained by agitated cultivation. The minimal amount of water required for growth and enzyme production on those substrates was about 15%, while the optimum level for phytase production was between 25 and 35% and that for cell growth was above 50%. Optimum pH for phytase production was between 4 and 6.A ficuum grew well on raw (unheated) substrate containing a minimal amount of water and produced as much phytase as on heated substrate. About half of the phytic acid in soybean meal and cottonseed meal was hydrolyzed by treatment withA. ficuum phytase. 相似文献
140.
Hypoxia-induced inhibition of converting enzyme activity: role in vascular regulation 总被引:3,自引:0,他引:3
Jin H.; Oparil S.; Ann H. S.; Yang R.; Jackson R. M. 《Journal of applied physiology》1987,63(3):1012-1018
Systemic and pulmonary vascular reactivity to graded doses of angiotensin I (ANG I), angiotensin II (ANG II), and, as a control, phenylephrine were examined in 14- or 28-day hypoxia-exposed and air control rats. Hypoxic rats exhibited pulmonary hypertension that was reversible on return to room air, but systemic arterial pressure was not altered by hypoxia. Systemic pressor responses to ANG I and ANG II were significantly less in the hypoxic rats than in the control rats at 14 and 28 days but returned to control levels in hypoxic animals that were then returned to room air, demonstrating reversibility of the hypoxia-induced changes in vascular reactivity. Pulmonary pressor responses to ANG I were significantly less at 14 days, whereas responses to ANG II were significantly greater at 28 days, in hypoxic rats than in controls. There were no significant differences in systemic and pulmonary pressor responses to phenylephrine between the hypoxic and air control animals. The altered systemic and pulmonary pressor responsiveness to ANG I and ANG II in hypoxic rats is probably related to mechanisms specific to the renin-angiotensin system, such as inhibition of intrapulmonary angiotensin-converting enzyme activity and down regulation of ANG II receptors in the systemic circulation. Further study is needed to elucidate these mechanisms. 相似文献