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1.
重组人GM—CSF基因在昆虫细胞中的表达   总被引:1,自引:0,他引:1  
利用苜蓿夜蛾核型多角体病毒(AcNPV)带β-Galactosidase基因标记的非融合蛋白基因转移载体pBlueBac将人粒细胞巨噬细胞集落刺激因子(hGM-CSF)基因成功地插入病毒AcNPV的基因组中.hGM-CSF基因在感染重组病毒的草地夜蛾(Spodopterafrugiperda)培养细胞Sf9中得到表达,感染后的Sf9细胞培养液能刺激人骨髓细胞在体外形成典型的集落,表达水平可达2.7×1055CFU/ml。以hGM-CSF单抗所作的WesternBlotting表明,表达的hGM-CSF对是3种糖基化程度不同的产物,分子量分别约为15kd,18kd和20kd。  相似文献   
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骨关节炎(osteoarthritis,OA)是最常见的慢性致残性关节疾患,目前尚无针对病因的有效治疗手段。程序性坏死在多种疾病中扮演关键角色,受体相互作用蛋白质激酶3(receptor-interacting protein kinase 3, RIP3)是程序性坏死进程的关键调控因子。有研究显示,RIP3在人与鼠骨关节炎退变软骨组织中表达水平显著上调,提示程序性坏死的发生,但RIP3在软骨中的具体病生理角色仍不明确。本研究拟对过表达RIP3前后的软骨细胞转录物组进行测序分析,探索RIP3在骨关节炎进程中发挥作用的具体机制。RNA测序结果显示,RIP3的过表达诱发软骨细胞中244个基因表达上调,277个表达下调。通过进一步构建基因间共表达作用网络,筛选出16个候选靶基因在mRNA水平进行验证,证实RIP3对磷脂酰肌醇3激酶调节亚单位5(phosphoinositide-3-kinase, regulatory subunit 5,Pik3r5)、整合素β3(integrin subunit beta 3,Itgb3)及成髓细胞瘤转录因子第2亚型(MYB proto-oncogene like 2,Mybl2)的表达上调作用最为显著。CCK-8以及乳酸脱氢酶活性检测结果表明,利用siRNA沉默Itgb3的表达可显著抑制RIP3诱发的软骨细胞活力下降及程序性坏死,同时也抑制了RIP3对软骨细胞中分解代谢相关基因Mmp1、Mmp13与Il6的表达上调作用,以及其对合成代谢相关基因Acan、Col2a1与Sox9的下调作用。本研究证实,RIP3通过上调软骨细胞中Itgb3的表达诱发软骨细胞坏死与软骨基质代谢紊乱,并最终导致软骨退变,为骨关节炎的临床治疗提供了新靶点,同时进一步明确了程序性坏死的病理生理学意义。  相似文献   
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[目的]中华蜜蜂Apis cerana cerana(简称中蜂),其胞内胆固醇转运体AcNPC2a能够识别并结合几种微生物的细胞壁,AcNPC2存在于该蜂触角,参与嗅觉通讯,关于AcNPC2b的功能尚未见报道.[方法]通过对中华蜜蜂AcNPC2b基因进行原核表达,以纯化的重组蛋白免疫小鼠,制备多克隆抗血清;利用荧光定量PCR和免疫印迹检测AcNPC2b的转录活性及蛋白水平,通过微生物结合测定对AcNPC2b的功能进行探索.[结果]中蜂AcNPC2b含有信号肽和ML结构域,具有3个二硫键,与果蝇Drosophila melanogaster DmNPC2b聚为一个亚枝.荧光定量qRT-PCR检测发现,感染中蜂囊状幼虫病毒(Chinses sacbrood virus,简称CSBV)的幼虫体内AcNPC2b基因的表达呈现出先微弱下调再持续上调的趋势.获得了约16ku的重组蛋白AcNPC2b并制备了多克隆抗体,免疫印迹结果表明,中蜂AcNPC2b蛋白在工蜂头、胸与中肠中的表达量最高,触角、马氏管与脂肪体中次之.AcNPC2b蛋白在正常与感染CSBV病毒的中蜂幼虫中均有表达,且在感染CSBV的中蜂幼虫中有微弱上调.重组蛋白AcNPC2b微生物结合测定实验结果显示中蜂AcNPC2b重组蛋白均能与活的大肠杆菌、金黄色葡萄球菌、芽孢杆菌以及白僵菌结合.[结论]正常与感染CSBV病毒的中蜂幼虫体内AcNPC2b基因转录水平和AcNPC2b蛋白的表达含量存在差异,重组蛋白AcNPC2b具有识别并结合病原菌的能力,为后续深入研究AcNPC2b蛋白的分子功能奠定了一定理论基础.  相似文献   
5.
Citrus is the most important tree fruit crop in the world. However, citrus production is affected by both biotic and abiotic stresses, including drought, extreme temperature, salinity, citrus canker, citrus tristeza virus, and Huanglongbing (or citrus greening), among others. These stresses can severely influence growth and development of both rootstocks and/or scions of citrus trees, thus reducing both fruit production and fruit quality. Modern advances in the tools of plant biotechnology and advances in genomics play important roles in understanding how citrus crops can cope with diseases and adverse environmental conditions. Within the last decades, much progress has been made in identifying and cloning of genes involved in resistance to biotic and abiotic stresses as well in genetic transformation of Citrus and its related genera, such as Poncirus trifoliata and Fortunella spp. In this review, we will provide information on advances and insights on genetic transformation protocols as well as availability of characterized genes involved in resistance to both abiotic and biotic stresses. This will be followed with a discussion on perspectives of future developments in this field.  相似文献   
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Interleukin (IL)-35 is a novel heterodimeric cytokine in the IL-12 family and is composed of two subunits: Epstein-Barr virus-induced gene 3 (EBI3) and IL-12p35. IL-35 is expressed in T regulatory (Treg) cells and contributes to the immune suppression function of these cells. In contrast, we found that both IL-35 subunits were expressed concurrently in most human cancer cell lines compared to normal cell lines. In addition, we found that TNF-α and IFN-γ stimulation led to increased IL-35 expression in human cancer cells. Furthermore, over-expression of IL-35 in human cancer cells suppressed cell growth in vitro, induced cell cycle arrest at the G1 phase, and mediated robust apoptosis induced by serum starvation, TNF-α, and IFN-γ stimulation through the up-regulation of Fas and concurrent down-regulation of cyclinD1, survivin, and Bcl-2 expression. In conclusion, our results reveal a novel functional role for IL-35 in suppressing cancer activity, inhibiting cancer cell growth, and increasing the apoptosis sensitivity of human cancer cells through the regulation of genes related to the cell cycle and apoptosis. Thus, this research provides new insights into IL-35 function and presents a possible target for the development of novel cancer therapies.  相似文献   
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A series of novel 6-(aminomethylphenoxy)benzoxaborole analogs was synthesized for the investigation of the structure–activity relationship of the inhibition of TNF-alpha, IL-1beta, and IL-6, from lipopolysaccharide stimulated peripheral blood mononuclear cells. Compounds 9d and 9e showed potent activity against all three cytokines with IC50 values between 33 and 83 nM. Chloro substituted analog 9e (AN3485) is considered to be a promising lead for novel anti-inflammatory agent with a favorable pharmacokinetic profile.  相似文献   
9.

Background and Purpose

Short-term combined use of clopidogrel and aspirin improves cerebrovascular outcomes in patients with symptomatic extracranial or intracranial stenosis. Antiplatelet non-responsiveness is related to recurrent ischemic events, but the culprit genetic variants responsible for the non-responsiveness have not been well studied. We aimed to identify the genetic variants associated with poor clinical outcomes.

Methods

Patients with symptomatic extracranial or intracranial stenosis scheduled for stenting and receiving dual antiplatelets (clopidogrel 75 mg and aspirin 100 mg daily) for at least 5 days before intervention were enrolled. Ischemic events including recurrent transient ischemic attack, stroke, myocardial infarction, and vascular-related mortality within 12 months follow-up were recorded. We examined the influence of genetic polymorphisms on treatment outcome in our patients.

Results

A total of 268 patients were enrolled into our study and ischemic events were observed in 39 patients. For rs662 of paraoxonase 1 (PON1), allele C was associated with an increased risk of ischemic events (OR = 1.64, 95%CI = 1.03–2.62, P = 0.029). The A-allele carriers of rs2046934 of P2Y12 had a significant association with adverse events (OR = 2.01, 95%CI = 1.10–3.67, P = 0.041). The variant T-allele of cyclooxygenase-1 (COX1) rs1330344 significantly increased the risk of recurrent clinical events (OR = 1.85, 95%CI = 1.12–3.03, P = 0.017). The other single nucleotide polymorphism (SNP) had no association with ischemic events.

Conclusions

PON1, P2Y12 and COX1 polymorphisms were associated with poorer vascular outcomes. Testing for these polymorphisms may be valuable in the identification of patients at risk for recurrent ischemic events.  相似文献   
10.
Our previous studies have indicated that a novel curcumin derivate nicotinate-curcumin (NC) has beneficial effects on the prevention of atherosclerosis, but the precise mechanisms are not fully understood. Given that autophagy regulates lipid metabolism, the present study was designed to investigate whether NC decreases foam cell formation through restoring autophagy flux in oxidized low-density lipoprotein (ox-LDL)-treated THP-1 cells. Our results showed that ox-LDL (100 μg/ml) was accumulated in THP-1 cells and impaired autophagy flux. Ox-LDL-induced impairment of autophagy was enhanced by treatment with the autophagy inhibitor chloroquine (CQ) and rescued by the autophagy inducer rapamycin. The aggregation of ox-LDL was increased by CQ, but decreased by rapamycin. In addition, colocalization of lipid droplets with LC3-II was remarkably reduced in ox-LDL group. In contrast, NC (10 μM) rescued the impaired autophagy flux by significantly increasing level of LC3-II, the number of autophagolysosomes, and the degradation of p62 in ox-LDL-treated THP-1 cells. Inhibition of the PI3K-Akt-mTOR signaling was required for NC-rescued autophagy flux. Notably, our results showed that NC remarkably promoted the colocalization of lipid droplets with autophagolysosomes, increased efflux of cholesterol, and reduced ox-LDL accumulation in THP-1 cells. However, treatment with 3-methyladenine (3-MA) or CQ reduced the protective effects of NC on lipid accumulation. Collectively, the findings suggest that NC decreases lipid accumulation in THP-1 cells through restoring autophagy flux, and further implicate that NC may be a potential therapeutic reagent to reverse atherosclerosis.  相似文献   
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