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991.
Aspergillusoryzae2336经两次紫外诱变后筛选出突变菌株UV21012-1。该菌株曲酸产量比出发菌株提高了1.68倍;遗传性状稳定,传代5次曲酸产量基本不下降,而且发酵周期也比出发菌株明显缩短。  相似文献   
992.
类风湿关节炎的关节滑膜病理生理机制   总被引:8,自引:0,他引:8  
类风湿关节灸(rheumatoid arthritis,RA)的主要病理特点是滑膜细胞增生,衬里层增厚,多种炎性细胞浸润,血管留形成等,这种病理改变是多种因素共同作用的结果。本文从基因突变、原癌基因活化、滑膜细胞演变、炎性细胞浸润,以及信号转导等方面,阐述其关节滑膜病理生理机制。  相似文献   
993.
To explore novel effective drugs for the treatment of Alzheimer’s disease (AD), a series of dual inhibitors of acetylcholineterase (AChE) and β-secretase (BACE-1) were designed based on the multi-target-directed ligands strategy. Among them, inhibitor 28 exhibited good dual potency in enzyme inhibitory potency assay (BACE-1: IC50 = 0.567 μM; AChE: IC50 = 1.83 μM), and also showed excellent inhibitory effects on Aβ production of APP transfected HEK293 cells (IC50 = 98.7 nM) and mild protective effect against hydrogen peroxide (H2O2)-induced PC12 cell injury. Encouragingly, intracerebroventricular injection of 28 into amyloid precursor protein (APP) transgenic mice caused a 29% reduction of Aβ1–40 production. Therefore, 28 was demonstrated as a good lead compound for the further study and more importantly, the strategy of AChE and BACE-1 dual inhibitors might be a promising direction for developing novel drugs for AD patients.  相似文献   
994.
哈维氏弧菌是引起大黄鱼疾病的主要致病菌之一,胞外蛋白酶是哈维氏弧菌GYC1108-1的主要致病因子。利用表型克隆技术,用Sau3AⅠ将提取的哈维氏弧菌基因组DNA酶切成短片段,纯化回收1-5 kb的片段与BamH I酶切的pUC118在T4连接酶的作用下进行连接,并转化感受态细胞TG1,在含0.5%脱脂奶和100μg/mL氨苄青霉素的LB平板上筛选胞外蛋白酶阳性株,命名为YZ。测定阳性株YZ的胞外蛋白酶活性,并对阳性株的重组质粒的插入片段进行序列测定,分析开放阅读框,确定胞外蛋白酶基因编码区。发现蛋白酶基因的ORF编码531个氨基酸,在起始密码子ATG上游存在一个核糖体结合位点(SD),其上游的启动区与大肠杆菌的σ70启动区和枯草芽孢杆菌的启动区高度同源。在终止子(TAG)下游,存在两个反向重复序列,为推导的2个转录终止子。哈维氏弧菌胞外蛋白酶基因的克隆与诠释为哈维氏弧菌致病机理和疫苗的开发奠定了基础。  相似文献   
995.
为顺应时代发展的需要,改善教学质量,提高医学生专业外语水平,我们在五年制中有选择的进行了多年的组织学与胚胎学双语教学改革。本文就授课对象的选择、教材的选用、教学方法、考核方法、教学效果分析和出现的问题及对策等方面进行了分析和小结。旨在总结经验,并不断的改进和完善双语教学。  相似文献   
996.
Methods for tagging biomolecules with fluorine 18 as immuno-positron emission tomography (immunoPET) tracers require tedious optimization of radiolabeling conditions and can consume large amounts of scarce biomolecules. We describe an improved method using a digital microfluidic droplet generation (DMDG) chip, which provides computer-controlled metering and mixing of 18F tag, biomolecule, and buffer in defined ratios, allowing rapid scouting of reaction conditions in nanoliter volumes. The identified optimized conditions were then translated to bench-scale 18F labeling of a cancer-specific engineered antibody fragments, enabling microPET imaging of tumors in xenografted mice at 0.5 to 4 hours postinjection.  相似文献   
997.
PsbM and PsbI are two low molecular weight subunits of photosystem II (PSII), with PsbM being located in the center, and PsbI in the periphery, of the PSII dimer. In order to study the functions of these two subunits from a structural point of view, we crystallized and analyzed the crystal structure of PSII dimers from two mutants lacking either PsbM or PsbI. Our results confirmed the location of these two subunits in the current crystal structure, as well as their absence in the respective mutants. The relative contents of PSII dimers were found to be decreased in both mutants, with a concomitant increase in the amount of PSII monomers, suggesting a destabilization of PSII dimers in both of the mutants. On the other hand, the accumulation level of the overall PSII complexes in the two mutants was similar to that in the wild-type strain. Treatment of purified PSII dimers with lauryldimethylamine N-oxide at an elevated temperature preferentially disintegrated the dimers from the PsbM deletion mutant into monomers and CP43-less monomers, whereas no significant degradation of the dimers was observed from the PsbI deletion mutant. These results indicate that although both PsbM and PsbI are required for the efficient formation and stability of PSII dimers in vivo, they have different roles, namely, PsbM is required directly for the formation of dimers and its absence led to the instability of the dimers accumulated. On the other hand, PsbI is required in the assembly process of PSII dimers in vivo; once the dimers are formed, PsbI was no longer required for its stability.  相似文献   
998.
Shen HM  Codogno P 《Autophagy》2011,7(5):457-465
The concept of autophagic cell death was first established based on observations of increased autophagic markers in dying cells. The major limitation of such a morphology-based definition of autophagic cell death is that it fails to establish the functional role of autophagy in the cell death process, and thus contributes to the confusion in the literature regarding the role of autophagy in cell death and cell survival. Here we propose to define autophagic cell death as a modality of non-apoptotic or necrotic programmed cell death in which autophagy serves as a cell death mechanism, upon meeting the following set of criteria: (i) cell death occurs without the involvement of apoptosis; (ii) there is an increase of autophagic flux, and not just an increase of the autophagic markers, in the dying cells; and (iii) suppression of autophagy via both pharmacological inhibitors and genetic approaches is able to rescue or prevent cell death. In light of this new definition, we will discuss some of the common problems and difficulties in the study of autophagic cell death and also revisit some well-reported cases of autophagic cell death, aiming to achieve a better understanding of whether autophagy is a real killer, an accomplice or just an innocent bystander in the course of cell death. At present, the physiological relevance of autophagic cell death is mainly observed in lower eukaryotes and invertebrates such as Dictyostelium discoideum and Drosophila melanogaster. We believe that such a clear definition of autophagic cell death will help us study and understand the physiological or pathological relevance of autophagic cell death in mammals.  相似文献   
999.
1000.
Paenibacillus polymyxa SQR-21 has been identified as a potential agent for the biocontrol of Fusarium wilt in watermelon, which is caused by the pathogenic fungus Fusarium oxysporum f.sp. niveum (FON). In the present study, the effects of root exudates from watermelon plants inoculated or non-inoculated with either SQR-21 or FON on conidial germination of FON were investigated. Compared to the control, conidial germination was decreased with root exudates from SQR-21-inoculated plants, but conidial germination was enhanced by root exudates from FON-inoculated plants. Maximal germination was found with root exudates from FON-inoculated plants after 30 d, which was 1.35 times more germination than the control. A split-root system was designed to verify that the alterations of the exudation pattern in SQR-21- inoculated or FON-inoculated watermelon roots were not only local, but also systemic. Cinnamic acid was found in the watermelon root exudates. An assay to test the effects of cinnamic acid on conidial germination of FON revealed that the stimulation of conidial germination was observed from cinnamic acid concentrations ranging from 0 to 30 μg/ml. In conclusion, both of SQR-21 and FON systemically affects watermelon root exudates. These results will help to the better understanding of the plant-microbe communication and will guide to improve the biocontrol strategies against Fusarium wilt of watermelon plants.  相似文献   
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