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21.
益生菌生物药物是指通过口服表达药用多肽(蛋白)的重组益生菌活细胞达到治疗疾病的新型口服给药系统。为了构建一种能有效防治2型糖尿病的酵母生物药物,文章首先构建了酿酒酵母(S.cerevisiae)整合型表达载体pNK1-PGK,并且通过绿色荧光蛋白(GFP)证明其表达功能正常,利用该载体将10×GLP-1 (Glucagon-like peptide-1)基因转化到酿酒酵母INVSc1中,通过营养缺陷型和Western blotting成功筛选出表达10×GLP-1的长效促胰岛素降糖酵母(Long-acting GLP-1 hypoglycemic yeast, LHY)。该酵母生长迅速,外源基因10×GLP-1表达稳定,表达量达到1.56 mg/g细胞湿重。通过链脲佐菌素和高脂高糖饮食联合诱导的方法构建了2型糖尿病小鼠模型,用LHY对其进行口服灌胃治疗,证明LHY具有较好疗效,明显降低血糖水平。  相似文献   
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【目的】从培菌白蚁——黄翅大白蚁后肠微生物菌群中分离能降解几丁质的细菌。【方法】以胶体几丁质为唯一碳源,根据胶体几丁质水解透明圈的大小进行筛选。通过形态学、生理生化以及16SrRNA基因序列分析进行菌株鉴定。【结果】从黄翅大白蚁肠道中筛选到8株能够降解胶体几丁质的细菌,它们分别属于芽孢杆菌属(Bacillus)、短芽孢杆菌属(Brevibacillus)、纤维单胞菌属(Cellulomonas)、指孢囊菌属(Dactylosporangium)、黄杆菌属(Flavobacterium)、类芽孢杆菌属(Paenibacillus)、鞘氨醇单胞菌属(Sphingomonas)和寡养单胞菌属(Stenotrophomonas)。8株菌均具有几丁质酶、β-葡萄糖苷酶和内切葡聚糖酶活性。【结论】从黄翅大白蚁后肠中获得8株能够降解胶体几丁质并具有其他碳水化合物降解酶活性的细菌,这一研究为了解白蚁肠道微生物协助白蚁消化食物机制提供了依据。  相似文献   
23.
BALB/c mice were immunized with purified White spot syndrome virus (WSSV). Six monoclonal antibody cell lines were selected by ELISA with VP28 protein expressed in E. coli. in vitro neutralization experiments showed that 4 of them could inhibit the virus infection in crayfish. Western-blot suggested that all these monoclonal antibodies were against the conformational structure of VP28. The monoclonal antibody 7B4 was labeled with colloidal gold particles and used to locate the VP28 on virus envelope by immunogold labeling. These monoclonal antibodies could be used to develop immun-ological diagnosis methods for WSSV infection.  相似文献   
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Background  

Autophagy plays a significant role in myocardial ischemia-reperfusion (IR) injury. So it is important to inhibit autophagy to protect cardiomyocytes besides anti-apoptosis. MiRNA has been demonstrated to protect cardiomyocytes against apoptosis during IR, while whether it has anti-autophagy effect has not been known. The aim of this study was to investigate whether miR-204 regulated autophagy by regulating LC3-II protein, which is the marker of autophagosome during myocardial IR injury.  相似文献   
26.
本利用福建省将乐县1963-1994年测报积累的观察赍料和气象资料,建立了越冬代二化螟、三化螟蛾高峰逐步回归顶测模型.Fuzzy分析预报模型,四代三化螟发生期发生量璜测模型。  相似文献   
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Embryo implantation into the maternal uterus is a crucial step for the successful establishment of mammalian pregnancy. Following the attachment of embryo to the uterine luminal epithelium, uterine stromal cells undergo steroid hormone-dependent decidualization, which is characterized by stromal cell proliferation and differentiation. The mechanisms underlying steroid hormone-induced stromal cell proliferation and differentiation during decidualization are still poorly understood. Ribonucleotide reductase, consisting of two subunits (RRM1 and RRM2), is a rate-limiting enzyme in deoxynucleotide production for DNA synthesis and plays an important role in cell proliferation and tumorgenicity. Based on our microarray analysis, Rrm2 expression was significantly higher at implantation sites compared with interimplantation sites in mouse uterus. However, the expression, regulation, and function of RRM2 in mouse uterus during embryo implantation and decidualization are still unknown. Here we show that although both RRM1 and RRM2 expression are markedly induced in mouse uterine stromal cells undergoing decidualization, only RRM2 is regulated by progesterone, a key regulator of decidualization. Further studies showed that the induction of progesterone on RRM2 expression in stromal cells is mediated by the AKT/c-MYC pathway. RRM2 can also be induced by replication stress and DNA damage during decidualization through the ATR/ATM-CHK1-E2F1 pathway. The weight of implantation sites and deciduoma was effectively reduced by specific inhibitors for RRM2. The expression of decidual/trophoblast prolactin-related protein (Dtprp), a reliable marker for decidualization in mice, was significantly reduced in deciduoma and steroid-induced decidual cells after HU treatment. Therefore, RRM2 may be an important effector of progesterone signaling to induce cell proliferation and decidualization in mouse uterus.  相似文献   
29.
A structurally unique aminoglycoside produced in Streptoalloteichus tenebrarius, Apramycin is used in veterinary medicine or the treatment of Salmonella, Escherichia coli, and Pasteurella multocida infections. Although apramycin was discovered nearly 50 years ago, many biosynthetic steps of apramycin remain unknown. In this study, we identified a HemK family methyltransferase, AprI, to be the 7’-N-methyltransferase in apramycin biosynthetic pathway. Biochemical experiments showed that AprI converted demethyl-aprosamine to aprosamine. Through gene disruption of aprI, we identified a new aminoglycoside antibiotic demethyl-apramycin as the main product in aprI disruption strain. The demethyl-apramycin is an impurity in apramycin product. In addition to demethyl-apramycin, carbamyltobramycin is another major impurity. However, unlike demethyl-apramycin, tobramycin is biosynthesized by an independent biosynthetic pathway in S. tenebrarius. The titer and rate of apramycin were improved by overexpression of the aprI and disruption of the tobM2, which is a crucial gene for tobramycin biosynthesis. The titer of apramycin increased from 2227 ± 320 mg/L to 2331 ± 210 mg/L, while the titer of product impurity demethyl-apramycin decreased from 196 ± 36 mg/L to 51 ± 9 mg/L. Moreover, the carbamyltobramycin titer of the wild-type strain was 607 ± 111 mg/L and that of the engineering strain was null. The rate of apramycin increased from 68% to 87% and that of demethyl-apramycin decreased from 1.17% to 0.34%.  相似文献   
30.
气道平滑肌细胞(airway smooth muscle cells,ASMCs)是引起哮喘患者气道收缩狭窄、呼吸阻力增加的主要效应细胞。ASMCs收缩效应检测是研究哮喘病理生理机制、评估或研发新的支气管舒张药物的重要实验依据。而常用的活体组织张力检测以及单层培养ASMCs显微镜形态观察等方法存在样品取材或测量误差等问题。该研究利用胶原蛋白凝胶构建气道平滑肌细胞的三维立体培养模型,将凝胶与培养孔壁分离,在不同的时间点记录细胞收缩力作用下凝胶面积的变化值,以此反映ASMCs的收缩效应。结果显示,0.1,1,10 mmol/L的乙酰胆碱(acetylcholine,Ach)刺激后,凝胶面积均显著缩小,随着剂量增加ASMCs的收缩反应增强。提前加入肌球蛋白ATP酶抑制剂BDM(butanedione monoxime),能明显抑制Ach诱导的ASMCs收缩反应,说明该方法的可重复性和准确性好。  相似文献   
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