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1.
目的建立心脏特异表达NOL3转基因小鼠,用于研究该基因在心肌病发病中的作用。方法Western blot检测小鼠NOL3表达谱。构建aMHC-NOL3表达载体,显微注射法建立NOL3转基因小鼠。PCR鉴定转基因鼠的基因型,心脏超声检测转基因及野生型小鼠心脏功能及几何构型。结果NOL3在1月龄野生型鼠心脏、脑、骨骼肌中的高表达,在心脏中的表达不随年龄而改变。通过转基因小鼠的筛选,得到了3个NOL3转基因品系,其中1个品系心脏NOL3蛋白表达量与野生型鼠相比明显增加。单转NOL3基因的小鼠心脏功能及几何构型与野生型小鼠相比无显著变化。结论成功建立了心脏特异表达NOL3转基因小鼠,为进一步和心肌病小鼠模型杂交,研究该基因在心肌病发病中的作用提供了工具。  相似文献   

2.
目的建立心脏特异表达LMNAE82K转基因小鼠,为研究LMNAE82K与心肌病发病机制的关系提供工具动物。方法把LMNAE82K基因插入α-MHC启动子下游,构建转基因表达载体,显微注射法建立C57BL/6JLMNAE82K转基因小鼠,PCR鉴定转基因小鼠的基因型,采用Western Blot鉴定LMNAE82K在心脏组织中的表达,H&E染色和超声检测转基因小鼠心脏的病理改变。结果建立了2个心脏组织特异表达LMNAE82K的转基因小鼠品系。超声检查显示转基因小鼠心室壁变薄,收缩期容积和舒张期容积增加,射血分数及短轴缩短率降低。结论LMNAE82K转基因小鼠具有LMNAE82K引起的家族性扩心病有类似的病理变化,为研究LMNAE82K与心肌病发病机制的关系的研究提供了有价值的疾病动物模型。  相似文献   

3.
目的S100B在多种神经损伤性疾病中高表达,高浓度的S100B蛋白对中枢神经系统具有毒性作用。建立脑组织特异表达S100B转基因小鼠,用于研究该基因在帕金森病(Parkinson's disease,PD)发病中的作用。方法ELISA法检测S100B蛋白在α-synuclein A53T转基因小鼠脑组织中的表达情况。构建PDGF-hS100B表达载体,显微注射法建立S100B转基因小鼠。PCR鉴定转基因鼠的基因型,Western blot检测基因表达水平。Rota-rod实验检测S100B转基因鼠的运动协调能力。结果S100B在9月龄和12月龄α-synucleinA53T转基因小鼠脑组织中的表达高于野生型小鼠。建立了2个品系的脑组织特异表达S100B转基因小鼠。与野生型小鼠相比S100B转基因小鼠表现出明显的进行性运动协调能力障碍。结论S100B转基因小鼠的建立为研究该基因在PD中的作用提供了工具。  相似文献   

4.
目的建立心脏特异性表达KCNQ1^V180 L转基因小鼠,为研究KCNQ1基因功能及其突变与心律失常性心脏疾病的关系提供工具动物。方法把KCNQ1^V180 L基因插入α-MHC启动子下游,构建转基因表达载体,显微注射法建立C57BL/6J KCNQ1^V180 L转基因小鼠,PCR鉴定转基因小鼠的基因型,采用Western Blot鉴定KCNQ1^V180 L在心脏组织中的表达,记录转基因小鼠死亡情况,超声分析转基因小鼠心脏结构形态和功能改变,心电分析转基因小鼠心肌电生理变化。结果建立了2个心脏组织特异性表达KCNQ1^V180 L转基因小鼠品系。转基因小鼠离乳前即出现猝死;超声检查显示转基因小鼠左心室内径变短,心室壁变厚,短轴缩短率增加;心电分析显示其心室复极异常。结论 KCNQ1^V180 L转基因小鼠具有临床长QT综合征类似的病理改变,可作为研究KCNQ1基因功能及其突变与心律失常发病机制的疾病动物模型。  相似文献   

5.
目的建立心脏特异表达的人源FAM55A转基因小鼠,为研究该基因在心肌病发病中的作用提供模型。方法 Western blot检测FAM55A在野生型小鼠与cTnTR141W转基因小鼠心脏组织中的表达变化及其在野生小鼠的组织表达谱。克隆人源FAM55A基因入α-MHC启动子下游构建a-MHC-FAM55A表达载体,显微注射法建立FAM55A转基因小鼠。PCR鉴定转基因首建鼠的基因型。Western blot鉴定人源FAM55A在转基因小鼠心脏中的表达,超声检测转基因小鼠心脏的几何构型和功能。HE染色检测转基因小鼠心脏的病理改变。结果 FAM55A在野生型小鼠心脏中有少量表达,在扩张型心肌病小鼠的心脏中表达增加。建立了1个心脏组织特异表达人源FAM55A转基因小鼠品系。与野生型小鼠相比,FAM55A转基因小鼠的心脏收缩期和舒张期左室前壁从1月龄到5月龄持续增厚,3月龄转基因小鼠心脏射血分数和短轴缩短率稍有增强,1月龄和5月龄转基因小鼠心脏功能则与同龄野生型小鼠相比无变化。组织学检测显示,转基因小鼠心脏左室心肌细胞不均匀肥大,但不发生紊乱。结论 FAM55A在扩张型心肌病小鼠的心脏中表达上调,建立了心脏特异表达的人源FAM55A转基因小鼠,为进一步和心肌病小鼠模型杂交,研究该基因在心肌病发病中的作用提供了工具。  相似文献   

6.
本研究拟建立心脏特异性表达hAPE1转基因小鼠,为研究hAPE1基因功能及其突变与心脏发育和心血管疾病的关系提供工具动物。将人APE1(human APE1,hAPE1)基因插入到心脏特异性启动子α-肌球蛋白重链(α-MHC)下游,构建了心肌细胞特异性表达hAPE1的转基因表达载体,显微注射法导入C57BL/6J小鼠受精卵中,经胚胎移植获得转基因首建者小鼠,建立hAPE1转基因小鼠,PCR鉴定转基因小鼠基因型,Western blotting鉴定h APE1蛋白在心脏中的表达并筛选高表达的转基因品系。研究表明,将含有心肌细胞特异性α-MHC启动子和hAPE1基因的转基因载体进行显微注射于小鼠胚胎中,接着将胚胎移植入假孕母鼠的输卵管中发育,建立了心脏组织特异性高表达hAPE1转基因小鼠品系,获得子代小鼠40只。PCR检测发现有15只小鼠在其基因组上整合有hAPE1基因,Western blotting检测hAPE1在这些小鼠心脏中高度特异性表达。本研究成功获得了在小鼠心肌细胞中特异性表达hAPE1的转基因小鼠,为研究基因在心脏发育与相关疾病中的功能提供了有利的工具。  相似文献   

7.
目的建立心脏特异表达小鼠24-脱氢胆固醇还原酶基因(Dhcr24)转基因小鼠,研究该基因在心脏中表达对小鼠心脏发育,形态和功能维持中的作用。方法RT-PCR法克隆小鼠24-脱氢胆固醇还原酶基因,把Dhcr24基因插入-αMHC启动子下游,构建转基因表达载体,通过显微注射法建立Dhcr24 C57BL/6J转基因小鼠。并利用特异引物PCR法鉴定转基因小鼠的基因型,RT-PCR和Western Blotting检测基因表达水平,光学显微镜和超声检测不同月龄Dhcr24转基因小鼠心脏的组织结构改变。结果建立了2个品系的心脏特异表达Dhcr24转基因小鼠。转入的Dhcr24基因在心脏组织的表达水平超过内源性Dhcr24的3倍。心脏组织学和超声检查证实:Dhcr24转基因小鼠的心室壁变厚,心腔变小,但心脏功能保持正常。结论成功建立了心脏特异表达Dhcr24转基因小鼠,Dhcr24基因在心脏组织的过度表达对小鼠心脏发育和功能维持中的作用需要进一步探讨。  相似文献   

8.
目的建立心脏特异表达的低密度脂蛋白受体相关蛋白2结合蛋白(Lrp2bp)转基因小鼠,研究该基因在心肌病发病中的作用。方法克隆鼠源Lrp2bp基因入α-MHC启动子下游,构建a-MHC-Lrp2bp表达载体,显微注射法建立Lrp2bp转基因小鼠。PCR鉴定转基因首建鼠的基因型。Westernblotting鉴定Lrp2bp在心脏中的表达,心脏超声检测转基因鼠及野生型小鼠心脏结构和功能,透射电镜观察心肌细胞的超微结构改变。结果得到了4个Lrp2bp转基因品系,其中3个品系心脏Lrp2bp蛋白表达量与同龄野生型鼠相比明显增加。1M龄转基因小鼠与同窝阴性对照小鼠相比,心壁变厚,心腔变大,射血分数和短轴缩短率下降。结论心脏特异表达的Lrp2bp基因能引起心肌肥厚表型,可能是参与心肌代偿性肥厚的基因之一。  相似文献   

9.
目的建立心脏特异表达WIF-1转基因小鼠,研究该基因在心脏中表达对小鼠心脏发育,形态和功能维持中的作用。方法RT-PCR法克隆人WIF-1基因,把WIF-1基因插入α-MHC启动子下游,构建转基因表达载体,通过显微注射法建立转WIF-1C57BL/6J小鼠。并利用特异引物PCR法鉴定转基因小鼠的基因表型,RT-PCR和Westernblot检测基因表达水平,超声检测不同月龄WIF-1转基因小鼠心脏结构及功能变化。结果建立了2个系的心脏特异表达WIF-1转基因小鼠。心脏超声检查证实,WIF-1转基因小鼠与对照小鼠比较,左心室重量减小,舒张期左室内径和容积变小,每搏输出量和心输出量减小。结论WIF-1基因是心脏功能的负调控因子。  相似文献   

10.
目的建立系统性表达人载脂蛋白A1(APOA1)基因的转基因小鼠。方法 将人APOA1基因插入系统性表达启动子下游,构建转基因表达载体,通过显微注射法建立人APOA1转基因C57BL/6J小鼠。并利用特异引物PCR法鉴定转基因小鼠的基因型,Western blot检测基因表达水平,血生化分析检测不同月龄转基因小鼠与同龄野生型小鼠的血脂指标。结果建立了2个不同表达水平的人APOA1基因的转基因小鼠品系;转入的人APOA1基因在血液、肝脏、心脏、肾脏、脾脏、血管组织中均有明显表达;血生化分析结果显示不同月龄转基因小鼠的血浆高密度脂蛋白胆固醇水平高于同龄的野生型小鼠,甘油三酯水平低于同龄野生型小鼠。结论成功建立了系统性表达人APOA1基因的转基因小鼠,为研究高血脂以及高血脂相关的心血管病提供了工具。  相似文献   

11.
目的建立系统性表达Dkk3转基因模型小鼠,为研究Dkk3生理功能及对骨生长发育的作用提供工具动物。方法通过ISH来观察Dkk3于C57BL/6J小鼠全身组织中的表达。把Dkk3基因插入系统性表达CMV启动子下游,构建转基因表达载体,显微注射法建立C57BL/6J Dkk3转基因小鼠。PCR鉴定转基因小鼠的基因型,RT-PCR检测Dkk3在骨髓中的表达,Western Blot检测Dkk3在肺脏、脑及肝脏中的表达,BrdU标记染色观察转基因小鼠骨生长情况。结果在生理状态下,Dkk3基因广泛表达,在骨、心脏及脑等组织高表达。建立的2个转基因小鼠品系中,转入的Dkk3基因在骨髓、脑、肝脏及肺组织中均有明显表达。BrdU整合率实验显示转基因小鼠长骨骺区细胞增殖明显低于同龄对照小鼠。结论建立了系统性表达Dkk3转基因小鼠,转入的Dkk3基因明显抑制小鼠长骨骨骺区细胞增殖,为Dkk3对骨生长发育的作用研究提供了有价值的工具动物。  相似文献   

12.
In this study, the presence of antifreeze protein (AFP) gene expression through successive generations in transgenic mice carrying the chimeric gene construct of the coding sequence for the AFP protein from ocean pout was investigated. AFP transgenic hemizygote mice were used for AFP gene expression. AFP genome expressions in transgenic mice were analyzed by Western blotting, and tissue location of AFP protein was shown by immunohistochemical and immunofluorescence techniques. Seventh transgenic mice from the established founders demonstrated the expression of AFP in organs such as the skin, oviduct, lung, kidney and liver tissues and serum except for the heart. Our results demonstrate successful expression of AFP gene products in several tissues and serum of transgenic mice, the association of in vivo expressed AFP protein, for the first time. These results indicate that the coding sequence for the AFP protein gene (ocean pout type III AFP gene) could be integrated and stably transcribed and expressed in the 7th generation of transgenic mice. In conclusion transgenic mouse lines would be a good model for the cryostudy of AFP and for the determination of AFP roles in several organs and tissues.  相似文献   

13.
We have generated transgenic mice carrying human ornithine decarboxylase gene. Two different transgene constructs were used: (i) a 5'-truncated human ornithine decarboxylase gene and (ii) an intact human ornithine decarboxylase gene. Transgenic mice carrying the 5'-truncated gene did not express human ornithine decarboxylase-specific mRNA. Transgenic mice carrying the intact human ornithine decarboxylase gene expressed human-specific ornithine decarboxylase mRNA in all tissues studied. However, as indicated by actual enzyme assays, the expression pattern was highly unusual. In comparison with their wild-type littermates, the transgenic mice exhibited greatly elevated enzyme activity in almost every tissue studied. Ornithine decarboxylase activity was moderately elevated in parenchymal organs such as liver, kidney, and spleen. Tissues like heart, muscle, lung, thymus, testis, and brain displayed an enzyme activity that was 20 to 80 times higher than that in the respective tissues of nontransgenic animals. The offspring of the first transgenic male founder animal did not show any overt abnormalities, yet their reproductive performance was reduced. The second transgenic founder animal, showing similar aberrant expression of ornithine decarboxylase in all tissues studied, including an extremely high activity in testis, was found to be infertile. Histological examination of the tissues of the latter animal revealed marked changes in testicular morphology. The germinal epithelium was hypoplastic, and the spermatogenesis was virtually totally shut off. Similar examination of male members of the first transgenic mouse line revealed comparable, yet less severe, histological changes in testis.  相似文献   

14.
我们在真核细胞中表达了小鼠Binlb基因,证实了它的抗菌活性,并进一步证明了该蛋白C端融合HA抗原决定簇后基本不影响蛋白的生物活性,为开展这一蛋白的转基因小鼠工作提供了较理想的转基因材料。同时我们利用四环素调控的基因表达系统(Tet-on系统)分别建立了附睾专一性表达rtTA的转基因小鼠和由TRE控制的mBinlb-HA的转基因阳性小鼠。这项研究对于我们理解mBinlb在体内的生理和病理作用提供了进一步研究的基础。  相似文献   

15.
Two transgenic mice, 5-8 and 7-5, carrying the chicken delta-crystallin gene were produced by microinjecting cloned genes into male pronuclei. The mice were analyzed at 8 weeks of age with respect to gene integration and expression by means of blotting techniques and immunohistochemistry. Southern blot analysis indicated that both mice carried, on average, 50 copies of intact delta-crystallin gene per cell. Histological analysis of the mice using DNA-DNA in situ hybridization indicated that mouse 5-8 carried the delta-crystallin gene in every cell while mouse 7-5 was mosaic, with 20-40% of the cells of various tissues carrying the gene. Western blot analysis indicated that in both mice delta-crystallin is expressed in the lens and the cerebrum, but not in any other tissue examined. Immunohistological analysis revealed that, in the cerebrum of the mice, delta-crystallin was expressed specifically in pyramidal neurons located in layer IIb of the anterior piriform cortex. Thus, our results with transgenic mice not only demonstrate the primary specificity of delta-crystallin gene expression in authentic lens tissue, but reveal the unexpected specificity of this chicken gene in the central nervous system of the mouse.  相似文献   

16.
TIMP-1转基因小鼠纯合子的建立及建系   总被引:5,自引:0,他引:5  
采用遗传学育种方法 ,使外源基因整合位点随机的基质金属蛋白酶抑制剂 1(TIMP 1)转基因小鼠成为单一整合位点的纯合子转基因小鼠而建立TIMP 1转基因小鼠品系 .通过受精卵原核显微注射方法 ,获得带有人TIMP 1基因的Founder小鼠 .将转基因小鼠与正常小鼠交配 ,得到子代小鼠 .通过PCR及Southern印迹等方法 ,检测TIMP 1DNA在转基因小鼠体内的整合情况 ,阳性率达5 0 %后 ,进行近亲交配 .提取小鼠组织总RNA ,Northern印迹分析阳性小鼠各组织外源性TIMP 1mRNA表达情况 ,以正常NIH小鼠做对照 .获得了 6代小鼠共 4 2 4只 ,其中PCR阳性鼠 2 72只 ,Southern阳性鼠 2 2 6只 ,纯合子转基因小鼠 12 8只 ;F4代后阳性率达到 95 %以上 .转基因小鼠TIMP 1基因表达情况在肾脏的丰度明显高于肝脏和脾脏 (P <0 0 1) ,而肝和脾之间并没有显著差异 (P>0 0 5 ) .外源基因在转基因小鼠体内可以稳定遗传 ,并得到了整合有TIMP 1基因的纯合子转基因小鼠 ,且在阳性的转基因小鼠体内在肾脏中特异性表达 ,为以后开展TIMP 1的肾脏病理生理研究提供了有用的手段  相似文献   

17.
神经细胞粘连分子L1是神经系统发育过程中介导细胞-细胞相互作用的重要分子。L1能启动轴突的延伸并与神经细胞迁移有关,在神经系统发育和维持方面起重要作用。L1基因突变会导致智力迟钝,痉挛性截瘫,脑积水和其他的发育异常。L1基因突变导致遗传性神经细胞疾病的分子机理目前还不清楚,本研究介绍L1转基因小鼠的构建。在小鼠神经细胞粘连分子L1细胞外区段(L1ECD)cDNA的末端上加一终止密码子后,置于神经系统特异性的pCAMKⅡ启动子之后,构建成L1ECD转基因DNA。为验证构建物的正确性,将其与真核细胞表达载体pCEP4连接并转染C6细胞,实现了L1ECD在C6细胞中的表达,并观察了L1ECD对体外培养的C6细胞和原代培养的神经元的效应。采用显微注射的方法将L1ECD转基因DNA导入小鼠受精卵,产出的仔鼠经尾组织基因组DNA Southern杂交分析和组织RNA Northern杂交分析,证明L1ECD转基因DNA已整合在转基因小鼠基因组内,并呈脑特异性表达。  相似文献   

18.
P Li  B Ma  J L Cai  Z Y Ni  C B Li  S Z Chen  S Y Zhao 《实验生物学报》1999,32(3):213-220
Neural cell adhesion molecule L1 is an important molecule mediating cell-cell interactions during the development of nervous system. L1 can promote axonal outgrowth and is related with nerve cell migration, and therefore L1 plays an important role both in the development and maintaince of the nervous system. In humans, mutations in the L1 gene can lead to mental retardation, spastic paraplegia, hydrocephalus, and other developmental abnormalities. The molecular mechanisms of mutations in L1 gene to induce inherited neurological diseases are not clear. In present investigation, a transgenic DNA of mouse L1 extracellular domain (L1ECD) was constructed by adding a stop codon to the end of L1ECD cDNA and then putting it under the control of CAMK II promoter, which is active specifically in the brain. To verify this construct, L1ECD cDNA was subcloned into an expression vector pCEP4 and then transfected the C6 cells. The expression of L1ECD cDNA in C6 cells was confirmed by Northern blotting and the effects of L1ECD on the growth rate and morphology of C6 cells in vitro as well as primarily cultured neurons were observed. The L1ECD constructs were microinjected into the fertilized zygotes of C57BL/6 mice. The transgenic mice thus produced were identified by Southern and Northern hybridization analysis. The results demonstrated that the L1ECD was integrated in the genome of transgenic mice and expressed specifically in the brain.  相似文献   

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