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1.
目的:建立能稳定、高效表达细胞因子信号转导抑制因子-3(SOCS-3)的细胞株SOCS-3-K562,为探讨SOCS-3在造血发育中的作用奠定基础。方法:通过重组慢病毒系统感染人红白血病细胞K562,采用流式细胞分选术,根据绿色荧光蛋白表达情况,获得稳定高表达SOCS-3的K562细胞;利用实时荧光定量PCR和蛋白质印迹实验,比较分选获得的细胞与对照细胞的SOCS-3表达差异;利用半定量PCR检测SOCS-3表达升高对K562红系发育相关基因GATA-1、β-globin表达水平的影响。结果:构建了人SOCS-3慢病毒表达载体;与对照组相比,通过流式细胞分选获得的K562细胞的SOCS-3基因表达水平升高8.05倍,蛋白表达水平升高3倍;SOCS-3表达升高后,K562细胞的GATA-1、β-globin基因表达受到明显抑制。结论:SOCS-3在造血发育中有重要的调控作用,而对其表达进行改变将在规模化的造血细胞定向诱导研究中发挥重要作用。  相似文献   

2.
为了降低生物人工肝(bioartificial liver system)中肝细胞胆汁酸的分泌,构建了胆固醇7α羟化酶慢病毒RNA干涉载体,并转染人肝脏细胞(L-02).根据绿色荧光蛋白的表达评估转染效率后进行流式分选,获得高表达慢病毒干涉载体的细胞,并以野生型L-02细胞和仅转染pSicoR空载体的L-02细胞作对照,观察肝细胞胆固醇7α羟化酶的表达以及培养上清中总胆汁酸含量.利用半定量PCR、实时荧光定量PCR及Western-blot等实验方法检测了转染细胞中基因的干涉效果,结果显示:与对照组相比,在mRNA水平,转染慢病毒siRNA载体的L-02细胞,其胆固醇7α羟化酶基因的表达量仅为野生型L-02细胞表达量的31.2%,为转染pSicoR空载体的L-02细胞的34.1%,干涉效率分别为68.8%和65.9%,均具有显著差异(P<0.05);Western-blot结果显示胆固醇7α羟化酶在蛋白质水平表达也明显受到抑制,表明转染慢病毒siRNA下调了肝细胞中胆固醇7α羟化酶基因的表达,减少了胆汁酸的分泌.以上研究结果表明,利用RNAi技术可以获得低表达胆固醇7α羟化酶基因的肝细胞,并有效降低肝细胞中胆汁酸的分泌,为临床上生物人工肝的构建及应用奠定基础.  相似文献   

3.
设计并筛选靶向nm23-H1基因的siRNAs序列,探讨nm23-H1基因与人慢性髓性白血病之间的关系。依据siRNA设计原则,设计3条siRNA序列。将不同靶点的siRNA用lipofectamine2000转染人慢性髓性白血病细胞株K562。转染后24h RTPCR检测nm23-H1mRNA水平变化;转染后48h免疫细胞化学法检测nm23-H1蛋白表达。MTT法检测转染后24h、48h和72h有效siRNA对K562细胞生长的影响。3条siRNA中,siNM526能有效地抑制K562细胞nm23-H1基因表达,转染siNM526的K56细胞生长受到抑制。说明下调nm23-H1基因的表达有抑制K562细胞增殖的作用,即降低了K562细胞的恶性程度。nm23-H基因有可能成为白血病治疗潜在的分子靶点。  相似文献   

4.
为了研究低氧诱导因子(hypoxia inducible factor-1alpha,HIF-1α)在干细胞增殖分化过程中的作用机制,构建了2个HIF-1α慢病毒siRNA干涉载体,并转染人胎儿肝脏基质细胞(fetal liver stromal cell,FLSC).根据绿色荧光蛋白的表达评估转染效率后进行流式细胞分选,获得高表达慢病毒干涉载体的细胞.实时荧光定量PCR和蛋白质印迹检测了转染细胞中HIF-1α基因的干涉效率,结果显示,与对照组相比,常氧下培养的细胞HIF-1α基因表达量仅为其相对表达量的18.8%和25.5%,干涉效率分别为81.2%和74.5%,低氧处理后的细胞HIF-1α相对表达量分别为对照组的21.2%和29.3%,干涉效率分别为78.8%和70.7%,均具有显著差异.蛋白质印迹结果显示,在蛋白质水平表达也明显受抑制,且重组干涉质粒pSicoR-HIF-1α1的干涉效应较强.RT-PCR、免疫荧光和ELISA法检测了沉默HIF-1α后胎肝基质细胞衍生因子1α(SDF-1α)在RNA和蛋白质水平的表达变化,干涉后细胞SDF-1α的表达明显减低.低氧条件下SDF-1α基因的调控作用有可能是通过低氧激活HIF-1α而诱导产生的,HIF-1α在干细胞增殖分化的分子调控机制中具重要作用.  相似文献   

5.
近年来,鸟氨酸脱羧酶抗酶(OAZ)作为肿瘤治疗的潜在靶点备受关注.本文研究了OAZ1基因过表达对慢粒白血病K562细胞红系分化的作用.构建框移位点突变的OAZ1 过表达慢病毒载体pLVX-Neo-OAZ1-IRES-ZsGreen,包装病毒并感染K562细胞, Western 印迹验证其过表达效果.FACS检测细胞分化标志物CD71和GPA,结合联苯胺染色分析细胞红系分化情况.对比氯化高铁血红素(hemin)诱导组,实时RT-PCR检测与K562细胞红系分化、癌变的关键基因(GATA1、BCR/ABL、TGFβ)转录水平,对OAZ1 诱导分化的机制进行初步探索.结果表明,慢病毒过表达载体及K562细胞过表达体系构建成功.OAZ1过表达后细胞红系分化标志物CD71+/GPA+为(11.22±2.09)%,与对照组(4.07±1.04)%、空病毒组(1.79±2.36)%相比差异极显著(P<0.01);联苯胺蓝染阳性率为(14.037±0.083)%,与对照组、空病毒组比较,差异也极显著(P<0.01).定 量分析结果提示,相对于GATA1、BCR/ABL 基因mRNA转录水平的影响,OAZ1对TGFβ 基因的作用更为明显.为此推断,OAZ1基因可诱导白血病K562细胞向成熟红系方向分化,其作用机制可能与TGFβ信号转导通路相关.  相似文献   

6.
目的构建稳定表达红色荧光蛋白(red fluorescent protein,RFP)和嘌呤霉素(puromycin)抗性的K562.PM.RFP细胞株,便于慢性粒细胞性白血病研究中K562细胞的观察和筛选。方法采用PCR法获得RFP片段,将其插入到慢病毒pGC-FU-3FLAG-IRES—Puromycin载体中获得pGC—PM—RFP重组质粒,经脂质体转染到293T细胞中获得慢病毒LV—PM—RFP,有限稀释法检测慢病毒在293T细胞中的转染效率,用包装获得的慢病毒感染K562细胞,经嘌呤霉素筛选获得RFP阳性的K562-PM—RFP细胞株。结果PCR及测序结果证实目的基因RFP正确克隆至慢病毒质粒中,经慢病毒LV—PM-RFP感染的K562细胞能在嘌呤霉素抗性培养基中存活,并稳定表达RFP。结论成功构建了慢病毒重组质粒pGC—PM-RFP,并获得了携带RFP及嘌呤霉素抗性基因的K562-PM—RFP细胞株。  相似文献   

7.
目的:沉默UVRAG基因在DADS诱导K562细胞中观察caspase3的表达。方法:以K562细胞为细胞模型,将构建成功并筛选出最有效干扰抑制UVRAG基因的si RNA序列片段采用lipofectamine TM2000脂质体转染法转染白血病K562细胞,组别为:空白对照组,转染试剂组、阴性对照组,阳性对照组,转染24小时后,利用QT-PCR检测UVRAG m RNA的表达水平以此观察干扰效果,再以40 mg/LDADS处理转染试剂组12小时,采用蛋白印迹(Western Blotting)技术检测凋亡相关基因caspase3的表达。结果:QT-PCR显示:与空白组相比,UVRAG m RNA表达明显减少,表明沉默UVRAG基因成功;Western Blotting显示:DADS处理的干扰成功的K562细胞12小时后,检测到caspase3的蛋白表达水平下降。结论:沉默UVRAG基因能使白血病K562细胞中凋亡相关基因caspase3的蛋白表达水平下降,提示抑制UVRAG表达的同时也可能抑制DADS诱导K562细胞的凋亡。  相似文献   

8.
用含有针对小鼠FSP27基因的siRNA慢病毒,感染小鼠前脂肪细胞系3T3-L1,建立小鼠FSP27基因沉默的前脂肪细胞系,为进一步研究该基因在脂肪细胞分化和脂肪代谢过程中的作用提供实验材料.根据小鼠FSP27基因设计双链siRNA,克隆至pSilencer2.1-U6质粒,形成含U6-siRNAbox的重组质粒.在293T细胞中检测siRNA沉默FSP27基因的效率,结果显示,siRNA可以高效地抑制外源小鼠FSP27的表达.将U6-siRNAbox重组到慢病毒载体FG12上,并将慢病毒载体与其他辅助载体用磷酸钙法转入293T细胞,包装成慢病毒.收集、浓缩、纯化病毒上清并用来感染靶细胞3T3-L1,检测感染效率和内源蛋白表达量的变化.结果显示,该siRNA可以高效地抑制内源小鼠FSP27的表达,并且siRNA插入基因组中,形成稳定表达.至此,小鼠FSP27基因沉默的前脂肪细胞系成功建立,为研究FSP27基因的功能提供了研究基础.  相似文献   

9.
该文旨在研究与遗传性红细胞增多症相关的低氧诱导因子HIF2α基因点突变对人造血干祖细胞红系分化的影响。通过构建人HIF2α基因编码区、携带疾病相关的两个点突变体(M535V和G537R)以及文献中报道的HIF2α基因阳性对照突变(P531A)慢病毒表达载体,分别包装病毒并感染人脐血来源的CD34+造血干祖细胞,并进行常氧及5%低氧条件下的红系定向诱导分化培养。利用FACS流式分析比较红系分化进程特征分子CD71和CD235a的表达变化,结合荧光定量PCR检测HIF2α调控的红系分化相关的靶基因表达水平。结果显示,构建的HIF2α及突变体的慢病毒载体经病毒包装后感染K562细胞可在RNA和蛋白水平实现过表达;与对照组相比,感染表达HIF2α基因或其突变体病毒后的脐血CD34+HSPC在常氧及5%O_2条件下诱导红系分化培养的细胞CD71和CD235a的表达动态均无明显改变,但HIF调控的红系分化相关基因EPOR和VEGFA的表达水平有一定升高。综上,在体外红系分化培养体系中,慢病毒介导的HIF2α及突变体的过表达不直接影响造血干祖细胞的红系分化进程,提示疾病相关的HIF2α基因突变造成的红系分化异常增多的细胞内外调控机制需要更进一步的深入研究。  相似文献   

10.
目的:研究急性白血病细胞系DLK1基因的表达水平在红系分化中的作用.方法:采用RT-PCR、Western bitting时白血病细胞系K562、HL-60进行DLK1水平的检测.培养K562细胞,用氯化高铁血红素(hemin)诱导其分化,观察DLK1在红系分化中的变化.结果:K562细胞DLK1mRNA、蛋白水平存在明显表达,HL-60细胞DLK1则不表达.通过RT-PCR检测了hemin诱导K562细胞向红系分化过程中各时间点DLK1mRNA的变化,显示随着K562向红系分化,DLK1mRNA的水平逐渐下降.结论:K562细胞表达DLK1,HL-60不表达DLK1.DLK1基因可能参与K562细胞向红系分化的过程,可能抑制其分化.  相似文献   

11.
12.
We studied the ability of phorbol 12-myristate 13-acetat to prevent erythroid differentiation and apoptosis in erythroleukemic K562 cells induced by cytidine, thymidine, and guanosine. The exposure of cancer cells to combinations of phorbol 12-myrsitate 13-acetate (100 nM) nucleosides for two days led to a loss of hemoglobin production (marker of erythroid differentiation) in cells and increased expression of monocyte-macrophage lineage associated surface antigen CD14. The treatment of K562 cells with nucleosides only was accompanied by the activation of caspase-3 and caspase-9, rather than caspase-6, increased fluorescence of ethidium bromide and DAPI upon binding to DNA, and apoptosis. Intracellular activation of caspase-6, inhibition of caspase-9, a markedly decreased activity of caspase-3 and of fluorescence of DNA-binding dyes, and inhibition of apoptosis were observed when the cells were treated with phorbol 12-myeristet 13-acetate combined with nucleosides.  相似文献   

13.
K562 cells were stably transfected with a plasmid vector constitutively expressing a full-length human c-myb gene. Parental cells possess the dual potential of inducibility of cellular differentiation along two lineages, i.e., erythroid and megakaryocytic. The resulting lineage is dependent on the inducing agent, with a number of compounds being competent to various degrees for inducing erythroid differentiation, while the tumor promoter tetradecanoyl phorbol acetate (TPA) induces a macrophage-like morphology with enhanced expression of proteins associated with megakaryocytes. Exogeneous expression of c-myb in transfected cell lines abrogated erythroid differentiation induced by cadaverine or cytosine arabinoside as assessed by hemoglobin production. However, TPA-induced megakaryocytic differentiation was left intact, as assessed by cell morphology, cytochemical staining, and the expression of the megakaryocytic antigens. These results indicate that c-Myb and protein kinase C play important roles in cellular differentiation of K562 cells and suggest that agents which directly modulate protein kinase C can induce differentiation in spite of constitutively high levels of c-Myb.  相似文献   

14.
We studied the ability of phorbol 12-myristate 13-acetat to prevent erythroid differentiation and apoptosis in erythroleukemic K562 cells induced by cytidine, thymidine, and guanosine. The exposure of cancer cells to combinations of phorbol 12-myrsitate 13-acetate (100 nM) nucleosides for two days led to a loss of hemoglobin production (marker of erythroid differentiation) in cells and increased expression of monocyte-macrophage lineage associated surface antigen CD14. The treatment of K562 cells with nucleosides only was accompanied by the activation of caspase-3 and caspase-9, rather than caspase-6, increased fluorescence of ethidium bromide and DAPI upon binding to DNA, and apoptosis. Intracellular activation of caspase-6, inhibition of caspase-9, a markedly decreased activity of caspase-3 and of fluorescence of DNA-binding dyes, and inhibition of apoptosis were observed when the cells were treated with phorbol 12-myeristet 13-acetate combined with nucleosides.Translated from Ontogenez, Vol. 36, No. 1, 2005, pp. 18–25.Original Russian Text Copyright © 2005 by Volkova, Malysheva, Nemova.  相似文献   

15.
Iron deficiency leads to abnormal expression and function of band 3 protein in erythrocytes, but the underlying mechanisms remain elusive. The mRNA of erythroid‐specific 5‐aminolevulinate synthase (eALAS) contains an iron response element and the eALAS protein is an important mediator of iron utilization by erythrocytes. In this study, we investigated the effect of short hairpin RNA (shRNA) mediated silencing of eALAS on the expression of band 3 protein induced by iron. By real‐time RT‐PCR and Western blot we showed that at mRNA and protein level iron‐induced expression of band 3 protein was lower in eALAS‐shRNA transfected K562 cells than in control cells. Of note, the lowest expression was detected in K562 cells cultured in iron deficiency condition (p < 0.01). Thus either iron deficiency or depletion of eALAS could suppress the expression of erythroid band 3 protein. These results demonstrated for the first time that iron and the iron‐regulatory system regulate the expression of the erythrocyte membrane proteins. Copyright © 2010 John Wiley & Sons, Ltd.  相似文献   

16.
硫氧还蛋白互作蛋白(thioredoxin interacting protein, Txnip)是一种氧化还原调节蛋白质,与硫氧还蛋白结合并抑制其活性,调节细胞氧化还原状态,影响细胞多种生理过程,然而其在猪脂肪细胞分化中的作用尚不明确。本文设计合成3对靶向猪Txnip基因的shRNA寡核苷酸,分别连接于重组慢病毒载体pGLV_3/H_1/GFP+Puro构建siRNA表达质粒。测序验证后,与包装质粒共转染293T细胞,获得滴度1×10~8 pfu/mL的慢病毒干扰质粒。以MOI值100转染原代培养猪前体脂肪细胞,转染率均达80%以上,其中Txnip-shRNA-2转染细胞Txnip基因沉默率达75%。转染Txnip-shRNA-2的猪前体脂肪细胞用成脂分化培养液诱导后,每隔1 d检测细胞成脂分化及相关基因表达。结果发现,其分化比阴性对照质粒转染或未转染细胞显著增强(P<0.05),PPARγ和FAS mRNA表达水平显著提高(P<0.05)。本文构建siRNA慢病毒表达质粒能有效干扰猪Txnip基因表达,Txnip表达沉默可通过上调PPARγ表达促进猪前体脂肪细胞分化。本研究提示,Txnip可能是猪脂肪细胞分化的抑制因子。  相似文献   

17.
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