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141.
利用组织特异性分子标志物启动子调控Cre重组酶,研制了6种在不同组织中特异性表达Cre重组酶的转基因小鼠.这些转基因小鼠的基因型鉴定均使用设计在Cre基因编码区的通用引物.为了特异性检测胰腺组织表达Cre重组酶的转基因小鼠,在大鼠胰岛素RIP启动子上和Cre基因上设计1对引物进行PCR扩增,并通过凝胶电泳进行分析.PCR结果显示,设计在Cre基因上的通用引物可以从6种不同组织特异性Cre重组酶转基因小鼠基因组DNA中扩增获得480 bp产物;利用本研究设计的特异性引物可以从胰腺组织表达Cre重组酶转基因小鼠基因组DNA中扩增200 bp的目的条带.这一结果表明,利用特异性引物进行PCR反应,可有效地将胰腺组织表达Cre重组酶转基因小鼠与其他多种组织的Cm重组酶转基因小鼠鉴别开来. 相似文献
142.
目的:探讨锌指基因ZFP580在全反式维甲酸(ATRA)调节VSMCs迁移功能中的作用及其机制。方法:分离,培养并鉴定大鼠主动脉VSMCs;分别予以0、5、10、20 μmol/L ATRA刺激VSMCs 24h,以0 μmol/L ATRA组为对照组,观察不同溶度ATRA刺激不同时间对VSMCs迁移能力的影响或给予0、20 μmol/L ATRA刺激VSMCs 24、48、72h,观察ATRA刺激不同时间对VSMCs迁移能力的影响;QPCR及Western blot检测ATRA刺激VSMCs后ZFP580的mRNA和蛋白表达变化;应用ERK抑制剂PD98059抑制ERK的蛋白表达,观察ERK信号蛋白表达变化对ATRA刺激后ZFP580蛋白表达的影响;腺病毒转染技术获得过表达或低表达ZFP580的VSMCs,QPCR及Western blot检测MMP-2和MMP-9、ZFP580蛋白和mRNA表达水平。结果:分离的VSMCs在培养10d后,免疫荧光显示平滑肌细胞特异性标记物SM22α抗体阳性。与对照组相比,5、10、20 μmol/L ATRA预刺激分别降低了32%、43%和59%的VSMCs迁移能力;20 μmol/L ATRA刺激VSMCs与对照组相比,在24、48、72h分别降低49%、36%和22%细胞迁移能力。ZFP580的mRNA和蛋白表达随着ATRA刺激溶度的增加和刺激时间的延长而升高。ERK在ATRA刺激15min即显著升高,运用ERK抑制剂PD98059(20 μmol/L)预处理抑制ERK蛋白表达并降低了ATRA诱导ZFP580的蛋白表达。过表达ZFP580降低MMP-2和MMP-9的mRNA和蛋白表达,反之,低表达ZFP580则上调了MMP-2和MMP-9的mRNA和蛋白表达。结论:ATRA可通过ERK信号通路上调ZFP580的表达,而ZFP580通过调控MMP-2和MMP-9的表达参与ATRA对VSMCs迁移的抑制作用。 相似文献
143.
Taxonomic characteristics of a strain of thermophilic acidophilic bacillus, Bacillus sp. 11-1S, which had the ability to produce thermophilic acidophilic amylase and thermostable xylanase were examined. Cells of the organism were aerobic, heterotrophic, Gram-positive, spore-forming rods. It grew at temperatures between 45 and 70°C (optimum 65°C) in media of pHs ranging from 2.0 to 5.0 (optimum 3.5 ~ 4.0). Physiological and biochemical characteristics were identical with those of Bacillus acidocaldarius, and % GC of DNA (59%) was close to that of the latter (61 ~ 62%). From these results it was concluded that the organism belongs to B. acidocaldarius Darland and Brock. 相似文献
144.
To study the gene expression profiles between immunologically injured liver cell and normal liver cell of mice and to screen
on a large scale the differentially expressed genes associated with the formation of liver injury, the experimental mice were
randomly divided into the normal group for controlling and the immunologically liver-injured group induced by BCG and LPS.
The liver mRNA of the two groups were extracted respectively and reversely-transcribed to cDNA with the incorporation of different
fluorescence (Cy3, Cy5) labeled dUTP as the hybridization probes. The mixed probes were hybridized to the cDNA microarray
chips. The fluorescent signal results were acquired by scanner ScanArray 4000 and analyzed with software GenePix Pro 3.0.
Among the 14112 target genes, 293 genes were found to be significantly differentially expressed, in which 188 genes were up-regulated
and 105 genes were down-regulated. Based on the analysis of biological functions of those differentially expressed genes,
it was indicated that the occurrence and development of mouse liver damage induced by BCG and LPS were highly correlated with
the processes of immune reactions, cell synthesis, metabolism, apoptosis and transportation in liver cell, which might be
quite important for elucidating the regulatory network of gene expression associated with the liver damage, also important
for finally discovering the pathogenic mechanisms of immunological liver damage. 相似文献
145.
A. Raab S. Popp K.‐P. Lesch M. J. Lohse M. Fischer J. Deckert L. Hommers 《Genes, Brain & Behavior》2018,17(4)
Anxiety disorders result from a complex interplay of genetic and environmental factors such as stress. On the level of cellular signaling, regulator of G protein signaling 2 (Rgs2) has been implicated in human and rodent anxiety. However, there is limited knowledge about the role of Rgs2 in fear learning and reactivity to stress. In this study, Rgs2?/? mice showed increased fear learning, male mice displayed increased contextual and cued fear learning, while females showed selectively enhanced cued fear learning. Male Rgs2?/? mice displayed increased long‐term‐contextual fear memory, but increased cued fear extinction. Learning in spatial non‐aversive paradigms was also increased in Rgs2?/? mice. Female, but not male mice show increased spatial learning in the Barnes maze, while male mice showed enhanced place preference in the IntelliCage, rendering enhanced cognitive function non‐specific for aversive stimuli. Consistent with the previous results, Rgs2 deletion resulted in increased innate anxiety, including neophobic behavior expressed as hypolocomotion, in three different tests based on the approach‐avoidance conflict. Acute electric foot shock stress provoked hypolocomotion in several exploration‐based tests, suggesting fear generalization in both genotypes. Rgs2 deletion was associated with reduced monoaminergic neurotransmitter levels in the hippocampus and prefrontal cortex and disturbed corresponding GPCR expression of the adrenergic, serotonergic, dopaminergic and neuropeptide Y system. Taken together, Rgs2 deletion promotes improved cognitive function as well as increased anxiety‐like behavior, but has no effect on acute stress reactivity. These effects may be related to the observed disruption of the monoaminergic systems. 相似文献
146.
Pharmaceutical industries are among the major contributors to industrial waste. Their effluents when wrongly handled and disposed of endanger both human and environmental health. In this study, we investigated the potential genotoxicity of a pharmaceutical effluent, by using the Allium cepa, mouse- sperm morphology, bone marrow chromosome aberration (CA) and micronucleus (MN) assays. Some of the physico-chemical properties of the effluent were also determined. The A. cepa and the animal assays were respectively carried out at concentrations of 0.5, 1, 2.5, 5 and 10%; and 1, 5, 10, 25 and 50% of the effluent. There was a statistically different (p < 0.05), concentration-dependent inhibition of onion root growth and mitotic index, and induction of chromosomal aberrations in the onion and mouse CA test. Assessment of sperm shape showed that the fraction of the sperm that was abnormal in shape was significantly (p < 0.05) greater than the negative control value. MN analysis showed a dose-dependent induction of micronucleated polychromatic erythrocytes across the treatment groups. These observations were provoked by the toxic and genotoxic constituents present in test samples. The tested pharmaceutical effluent is a potentially genotoxic agent and germ cell mutagen, and may induce adverse health effects in exposed individuals. 相似文献
147.
多发性骨髓瘤患者外周血淋巴细胞亚群分析及与预后因子的相关性 总被引:1,自引:0,他引:1
目的通过对多发性骨髓瘤(MM)患者外周血淋巴细胞亚群的检测以评价MM患者机体的免疫功能状态。方法采用流式细胞术检测36例MM患者和25例健康志愿者外周血T、B淋巴细胞、NK细胞及CD4+CD25+T细胞的表达。结果与正常对照组相比,MM患者外周血的CD4、CD19细胞的表达显著下调,CD8细胞的表达显著上调,CD4/CD8比值则显著降低(P〈0.05或〈0.01);MM患者外周血的CD4+CD25+T细胞占CD3+T细胞的比例明显增高(P〈0.01),且与血清中的β2-MG浓度成正相关(γ=0.56,P〈0.05)。结论 MM患者体内存在淋巴细胞亚群的异常表达、CD4+CD25+Treg细胞的异常扩增,可能是MM患者体内广泛存在免疫缺陷的一个主要原因。 相似文献
148.
突变靶基因xylE转基因小鼠 总被引:2,自引:0,他引:2
本研究以pESnx穿梭质粒为载体,选用恶臭假单孢杆菌TOL质粒上的xylE基因作为突变靶基因组构建的重组构件,经微注射导入ICR小鼠549枚受精卵雄原核,将存活的352枚卵移入24只假孕鼠输卵管内,7只妊娠,共产仔41只,其中7只死胎,出生后死亡4只,30只存活。注射卵存活率为64%(352/549),出生率为11.6%(41/352)。存活鼠经PCR-Southern检测,整合率为57%(17/30)。在整合阳性鼠中选择了杂交信号较强的2只当代公鼠,通过回收载体和转化试验,结果表明整合基因完整,具有转化的功能,由此,建立了突变靶基因xylE转基因小鼠模型。 相似文献
149.
不同应激因子对小鼠肝脏金属硫蛋白诱导合成的影响 总被引:3,自引:0,他引:3
目的筛选出小鼠肝脏金属硫蛋白(MT)合成量最大的诱导方式。方法从时间-效应和剂量-效应两方面研究了重金属元素(Cd)、微量元素(Zn)、重金属与微量元素的组合(Cd+Zn)、生理因子(饥饿)及创伤因子等五大类组合应激因子、19种诱导方式对小鼠肝脏中MT诱导合成的影响及效果。结果生理因子诱导MT量最小,饥饿诱导小鼠肝脏MT的量随饥饿程度的加重而增加,但各组间差异不显著(P〉0.05);创伤因子诱导产生MT的量最高,其诱导量随创伤恢复时间的增加而降低,各组之间差异显著(P〈0.01),本实验诱导峰值(9.0241±0.6441μmol/g)出现在创伤后6 h;重金属元素和微量元素诱导量居中,且两者混合诱导量比单独诱导量之和要大。结论成功筛选出诱导小鼠肝脏MT合成最有效的因子和最佳时间,为进一步大量合成MT及研究其功能等奠定基础。 相似文献
150.
The IκB kinase/NF-κB signaling pathway has been implicated in the pathogenesis of several inflammatory diseases. Increased activation of NF-κB is often detected in both immune and non-immune cells in tissues affected by chronic inflammation, where it is believed to exert detrimental functions by inducing the expression of proinflammatory mediators that orchestrate and sustain the inflammatory response and cause tissue damage. Thus, increased NF-κB activation is considered an important pathogenic factor in many acute and chronic inflammatory disorders, raising hopes that NF-κB inhibitors could be effective for the treatment of inflammatory diseases. However, ample evidence has accumulated that NF-κB inhibition can also be harmful for the organism, and in some cases trigger the development of inflammation and disease. These findings suggested that NF-κB signaling has important functions for the maintenance of physiological immune homeostasis and for the prevention of inflammatory diseases in many tissues. This beneficial function of NF-κB has been predominantly observed in epithelial cells, indicating that NF-κB signaling has a particularly important role for the maintenance of immune homeostasis in epithelial tissues. It seems therefore that NF-κB displays two faces in chronic inflammation: on the one hand increased and sustained NF-κB activation induces inflammation and tissue damage, but on the other hand inhibition of NF-κB signaling can also disturb immune homeostasis, triggering inflammation and disease. Here, we discuss the mechanisms that control these apparently opposing functions of NF-κB signaling, focusing particularly on the role of NF-κB in the regulation of immune homeostasis and inflammation in the intestine and the skin. 相似文献