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981.
利用凝胶和离子交换柱(Mono Q)两次层析,将大肠杆菌表达的EB病毒早期抗原P138片段多肽纯化。以此P138为抗原,增加鼠抗人IgA单克隆抗体以扩大IgA的反应,建立了三步ELISA法。用本法检查了100例鼻咽癌病人和63例正常人血清中抗EB病毒IgA/EA抗体,病人血清的阳性检出率为86%,正常人有3例阳性(4.7%)。此结果表明,三步ELISA法较常用的间接ELISA法(阳性检出率为71%)敏感。  相似文献   
982.
为探索肉桂在防治厌氧菌感染应用于临床的可能性,作者进一步用122株厌氧菌检测肉桂的抗菌活性。肉桂起抗菌作用的主要成分是桂皮醛。本文用商品桂皮醛,加吐温80助溶,配成含桂皮醛512μg/ml、256μg/ml 等一系列培养液,进行试管法测定 MIC、MBC。结果 MIC 在128μg/ml 以下者占所试菌株的76%,在256μg/ml 以下占96.7%。脆弱类杆菌、产黑素类杆菌相对更敏感。MBC 一般显著高于 MIC,因此桂皮醛主要是抑菌作用。从细菌的形态学观察,推论桂皮醛主要是作用细菌的胞壁,鉴于桂皮醛有一定毒性,作者建议可作为局部抗厌氧菌药物。  相似文献   
983.
冬虫夏草多糖的分子结构与免疫活性   总被引:2,自引:0,他引:2  
 冬虫夏草多糖(在本文中名为CS-81002)是由冬虫夏草菌Cordyceps sinensis(Berk)Sacc在人工发酵条件下产生的胞外多糖。用凝胶过滤法测出CS-81002的分子量Mr=43kD。CS-81002的单糖组成为Man:Gal:Glc=10.3:3.6:1。甲基化分析和部份酸水解结果表明,CS-81002是多分支的杂多糖,由→6)-Manp-(1→形成主链,大约每10个主链Man残基中,有6个在C3位上被取代(即形成→3,6)-Manp-(1→分支),有4个在位C2上被取代(即形成→2,6-Manp-(1→分支),从而形成侧链。主链中还有少许未被取代的Man残基。侧链则由→3-)-Galf-(1→,→4)-Glcf-(1→,→4)-Manp-(1→和→2)-Manp-(1→组成。位于非还原末端的,则三种单糖残基都有。CS-81002在5mg/kg体重×12剂量条件下,对正常的昆明小鼠腹腔巨噬细胞吞噬功能有显著促进作用。在同样剂量条件下,对正常LACA小鼠脾脏溶血斑形成细胞(PFC)对绵羊红细胞的溶血作用无显著影响。不同程度的部份酸水解可使CS-81002的分子量下降,分支减少,并且对巨噬细胞吞噬功能的促进作用亦有下降趋势。在所得到的各个部份酸水解级分(分子量分别为41000,40000,32000,16000和12000)中,分子量为12000的级分对巨噬细胞吞噬功能无促进作用。  相似文献   
984.
 经N-乙酰氨基葡萄糖交联琼脂糖亲和层析及以交联琼脂糖介质的高效液相分子筛层析,从中国鲎细胞溶解物中分离纯化了一种凝集素,其活性比原料鲎试剂提高128倍。鲎凝集素SDS电泳时表现出分子量为69000,和72000的二个亚基。N-乙酰氨基葡萄糖、D-半乳糖,D-甘露糖及岩藻糖等对鲎凝集素凝集鸡红细胞的活性有显著抑制作用,加热60℃,10分钟可使凝集素活性基本丧失。CaCl_2为凝集素活性所必需。鲎凝集素与肺炎球菌C多糖有沉淀反应。  相似文献   
985.
 本文报道了培养的人黑色素瘤细胞分泌的组织纤溶酶原激活剂(t-PA)的纯化方法。Bowes株人黑色素瘤细胞的分泌产物,经CM-Sephadex C--50层析,赖氨酸-Sepharose 4B,苯甲眯-sepharose 4B亲和层析后,即可得到纯化470倍的蛋白纯品。样品经聚丙烯酰胺凝胶电泳鉴定为均一单带,测得其分子量约为72kD。纯化的t-PA与尿激酶相比较,发现前者有更高亲和纤维蛋白的能力。  相似文献   
986.
 生物素可通过氨烷基磷酰胺基团连接到寡核苷酸5'末端,反应在水溶液中进行,核苷酸的侧链基团不用保护。我们以这种化学法合成了生物素标记的寡核苷酸探针,其显色灵敏度达50pg,杂交灵敏度达0.4fmol,并与酶标生物素寡核苷酸探针进行了比较,也对两种不同显色体系作了比较。  相似文献   
987.
 <正> 单葡萄糖甘油二酯(MGDG)和双葡萄糖甘油二酯(DGDG)是莱氏衣原体膜上主要的极性脂。糖脂的生理功能过去很少研究,至今仍不清楚。近年来实验结果表明,MGDG在膜上容易形成六角形Ⅱ结构,而DGDG则形成脂双层结构。六角形Ⅱ结构的出现与生物膜的生理功能的关系是当前瞩目的研究内容。本文首次研究了外源脂肪酸和胆固酵对莱氏衣原体AIH089菌株膜上糖脂含量的影响。  相似文献   
988.
The product of the retinoblastoma susceptibility gene (RB) was overproduced in cultured insect cells using the baculovirus expression system. Upon insertion of the cloned human RB complementary DNA sequence into the viral genome downstream of the promoter of the polyhedrin gene, full-length RB protein with an apparent molecular weight of 110,000 was expressed in the insect cells. This protein was found to be phosphorylated, located in the nuclei of the infected cells, and immunologically indistinguishable from pp110RB of human cells as assayed by several anti-RB antibodies. Following cell disruption and a one-step immunoaffinity chromatographic purification, 6-12 mg of soluble pp110RB with approximately 95% purity were obtained per liter of infected suspension culture. Characterization of the two known biochemical properties of RB protein showed that this purified protein from insect cells behaved similarly to the authentic human pp110RB. First, it bound to DNA, and second, it could form a specific complex with SV40 T antigen in vitro. Prompt translocation of the protein from cytoplasm to nucleus after microinjection further indicated that the purified RB protein may be active. The availability of soluble, intact, and presumably active pp110RB in large quantity represents a significant advance for studying the biochemical and biophysical properties of the RB gene product as well as its potential biological function in cancer suppression.  相似文献   
989.
Protein kinase FA (an activating factor of ATP·Mg-dependent protein phosphatase) has been characterized to exist in two forms in the purified brain myelin. One form of kinase FA is spontaneously active and trypsin-labile, whereas the other form of kinase FA is inactive and trypsin-resistant, suggesting a different membrane topography with active FA exposed on the outer face of the myelin membrane and inactivu FQ buried within the myelin membrane. When myelin was solubilized in 1% Triton X-100, all kinase FA became active and trypsin-labile. Phospholipid reconstitution studies further indicated that when kinase FA was reconstituted in acidic phospholipids, such as phosphatidylinositol and phosphatidylserine, the enzyme activity was inhibited in a dose-dependent manner, suggesting that kinase FA interacts with acidic phospholipids which inhibit its activity. Furthermore, when myelin was incubated with exogenous phospholipase C, the inactive/trypsin-resistant FA could be converted to the active/trypsin-labile FA in a time- and dose-dependent manner. Taken together, it is concluded that membrane phospholipids play an important role in modulating the activity of kinase FA in the brain myelin. It is suggested that phospholipase C may mediate the activation-sequestration of inactive/trypsin-resistant kinase FA in the brain myelin through the phospholipase C-katalyzed degradation of acidic membrane phospholipids. The activation-sequestration of protein Kinase FA may represent one mode of control modulating the activity of kinase FA in the central nervous system myelin.  相似文献   
990.
Abstract: Inclusion of sodium nitroprusside {Na2[Fe2+-(CN)5NO]} into the culture medium is toxic to cultured rat cerebellar granule neurons. A possible underlying mechanism may be the inhibition of phosphoinositide (PI) response to excitatory amino acids (EAAs) because activation of glutamate receptors can be neuroprotective and neurotrophic in differentiating neurons. Sodium nitroprusside selectively inhibited the PI response to EAAs (NMDA > glutamate = quisqualate > kainate) without affecting that to carbachol or KCI. In contrast, S-nitroso-N-acetylpenicillamine (SNAP), another nitric oxide (NO) donor, potentiated NMDA-induced PI hydrolysis. Hemoglobin reversed the effects of nitroprusside and SNAP. However, NO may not be involved because NO solution was without effect and N-acetylpenicillamine, a SNAP analogue that does not contain a NO moiety, also potentiated NMDA-induced PI hydrolysis in a hemoglobin-sensitive manner. Furthermore, the metabolites of NO (nitrate and nitrite), l -arginine, reduced glutathione, 8-bromo-cyclic guanosine 3′:5′-cyclic monophosphate (8-Br-cGMP), and atrial natriuretic peptide, which accelerates the production of cGMP independent of NO, were ineffective as modulators. However, potassium ferrocyanide {K4[Fe2+(CN)6]}, but not potassium ferricyanide {K3[Fe3+(CN)6]}, inhibited NMDA-induced PI hydrolysis as effectively as nitroprusside, but this inhibition was not reversed by hemoglobin. Cyanide, a product from the disintegration of nitroprusside, potentiated rather than inhibited NMDA-induced PI hydrolysis. Taken together, these results suggest that the parent molecule itself, nitroprusside, contributes primarily in inhibiting EAA-induced PI hydrolysis. Inhibition of EAA-induced PI hydrolysis may in part mediate the mechanisms of nitroprusside toxicity in primary cultures of differentiating cerebellar granule neurons.  相似文献   
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