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1.
利用RT-PCR和RACE技术,从菠菜中首次获得了14-3-3蛋白基因的全长cDNA序列(GenBank登录号JX952165),命名为So14-3-3.该基因全长1 166 bp,开放阅读框801 bp,编码266个氨基酸.序列比对发现So143 3蛋白与其他植物14-3-3蛋白氨基酸序列一致性高达77.6%~84.7%.半定量RT-PCR表明,随NO3-胁迫处理时间的延长和浓度的增加,菠菜根和叶中So14-3-3基因的表达增强.实验构建了pGEX4T-So14-3-3原核表达载体,并通过IPTG诱导后获得分子量约为56 kD的蛋白.进一步的蛋白质印迹检测结果表明,随着NO3处理时间的延长和浓度的增加,So14-3-3蛋白表达也增加.该实验结果为进一步研究So14 3-3蛋白功能提供了基本的实验基础.  相似文献   

2.
运用RT-PCR和RACE技术,以粘虫(Mythimna separata(Walker))cDNA为模板,对甘油醛-3-磷酸脱氢酶(glyceraldehyde-3-phosphate dehydrogenase,GAPDH)基因进行克隆获得全长cDNA序列,并利用生物信息学方法,对GAPDH全长cDNA序列及推测得到的GAPDH蛋白序列进行分析.结果表明,获得的粘虫GAPDH基因cDNA序列长度为1 317 bp,其中包括80 bp的5′非编码区、238 bp的3′非编码区和999 bp的开放阅读框(Open Reading Frame,ORF),编码一个332个氨基酸蛋白,具有GAPDH蛋白家族的两个功能结构域.该GAPDH蛋白理论相对分子质量为35.498 6 kDa,等电点为7.63,富含6种类型的特定功能位点.该蛋白序列与其他动物GAPDH蛋白序列具有77.4%~92.9%高度同源性.GAPDH基因表达量检测结果显示GAPDH在粘虫6种不同组织间表达量无显著差异(P0.05),表明GAPDH可作为研究粘虫功能基因表达量分析的可靠内参基因.该基因的cDNA序列已经递交GenBank并获得登录号为HM055756.  相似文献   

3.
半胱氨酸蛋白酶3 (Caspase-3)作为细胞凋亡通路中重要的效应蛋白,在细胞凋亡过程中发挥着重要作用.为初步探究马氏珠母贝Caspase-3(PmCaspase-3)的生物学功能,本研究利用cDNA末端快速扩增(RACE)技术克隆获得PmCaspase-3基因cDNA的全长序列并对其序列特征进行分析;同时利用实时荧光定量PCR (RT-qPCR)方法分析了PmCaspase-3基因mRNA在马氏珠母贝不同组织和不同发育时期的表达差异.结果 显示,PmCaspase-3基因cDNA全长为2233 bp,其中5'端非编码区长度为80 bp,3'端非编码长度为31 bp,开放阅读框长度为2088 bp,共编码695个氨基酸;生物信息学分析显示,PmCaspase-3含有Caspase家族特有的CASc结构域和半胱氨酸蛋白酶家族p20、p10活性位点以及多种磷酸化位点,经进化分析以及多序列比对可知与其他物种Caspase-3蛋白同源性较高.RT-qPCR结果表明,PmCaspase-3在肝胰腺中的表达量最高,在闭壳肌中的表达量最低;在发育过程中D型幼虫期和眼点期的表达量较高.  相似文献   

4.
棉花143-3L基因的分子鉴定及其在纤维发育中优势表达分析   总被引:1,自引:0,他引:1  
14-3-3蛋白以二聚体形式存在于所有真核生物中,是一种高度保守的调节蛋白,在细胞生长、增殖、凋亡、信号转导等生命活动中发挥着重要调控作用。我们在棉纤维cDNA文库中分离克隆到1个基因(cDNA),编码14-3-3蛋白类似物,命名为Gh14-3-3L(Gossypiumhirsutum14-3-3-like)。该cDNA长度为1,029bp,包含762bp开放阅读框,其编码蛋白由253个氨基酸组成。Gh14-3-3L与其他真核生物的14-3-3蛋白具有较高的同源性,并具有14-3-3蛋白的基本结构:二聚体结构域、磷酸化丝氨酸富集识别序列、4个CC结构和1个EFHand结构。Northern杂交分析显示Gh14-3-3L在棉纤维发育早期优势表达,且在10DPA棉纤维细胞中表达量最高,这表明Gh14-3-3L基因可能涉及棉纤维细胞伸长过程的调节。研究还表明,该基因在胚珠和花瓣组织中也有较强的表达,但在其他组织中表达较弱或不表达。  相似文献   

5.
目的:构建人14-3-3σ基因的原核表达载体,获得其原核表达产物,并对融合蛋白进行纯化及活性检测。方法:采用PCR技术从人乳腺文库中扩增14-3-3σ基因编码序列,将其克隆到pGEX-KG载体中,重组质粒转化大肠杆菌Rossate后表达重组蛋白,利用GST-Sepharose 4B亲和珠对原核表达产物进行纯化,并通过SDS-PAGE和Western印迹检测融合蛋白的表达,采用GST pull-down技术检测已纯化的蛋白与已知体外相互作用蛋白AKT之间的相互作用。结果:从人乳腺文库中扩增获得约750 bp的DNA片段,并成功克隆至pGEX-KG载体上,经双酶切鉴定得到与预期片段大小相符的外源基因插入片段,测序与目的基因序列完全一致;在Rossate菌株中诱导表达出相对分子质量约52 000的目的蛋白,SDS-PAGE和Western印迹结果表明融合蛋白表达成功,并纯化得到GST-14-3-3σ融合蛋白;通过GST pull-down技术检测证实GST-14-3-3σ融合蛋白可以和AKT在体外结合,并证实其具有生物学活性。结论:获得了原核表达的活性较好的GST-14-3-3σ蛋白,为后续研究细胞周期蛋白调控机制奠定了实验基础。  相似文献   

6.
美洲大蠊3-磷酸甘油醛脱氢酶基因的克隆及表达   总被引:1,自引:0,他引:1  
旨在通过5’-RACE获得美洲大蠊3-磷酸甘油醛脱氢酶(GAPDH)基因的全长cDNA序列,进行生物信息学分析,构建原核表达载体,诱导重组蛋白表达,为进一步研究其功能奠定基础.通过3’-RACE技术,PCR扩增获取编码美洲大蠊GAPDH蛋白的全长cDNA序列;采用生物信息学方法推导出该序列编码的氨基酸序列及其理化性质;预测信号肽、蛋白疏水性、可溶性、跨膜区结构、二级结构、三级结构,并构建系统发育树;构建原核表达载体pET28a-GAPDH,IPTG诱导重组蛋白表达,并用Histag抗体Western blotting验证.结果显示,美洲大蠊GAPDH基因,其完整阅读框含999个碱基,编码332个氨基酸.序列分析显示,该蛋白与家蚕GAPDH相似性为89%,具有GAPDH保守功能域,经IPTG诱导获得重组蛋白.  相似文献   

7.
星星草cDNA文库构建和金属硫蛋白(MT-1)基因的克隆   总被引:5,自引:0,他引:5  
以受NaHCO3胁迫后的星星草叶片组织为材料构建了cDNA文库,文库的初始滴度为2.0×106pfu,重组率为95%,平均插入片段长度为0.8kb,扩增后文库的滴度为4.0×109pfu.mL-1.文库克隆随机测序获得了星星草的金属硫蛋白(MT-1)基因的全长cDNA序列,显示文库中含有一定量的全长基因.MT-1基因全长622bp,其中5'非翻译区57 bp,3'非翻译区343 bp,开放读码框长222 bp,编码73个氨基酸,氨基酸序列中具有植物MT-1蛋白特有的金属响应元件(MRE)序列,MT-1蛋白的分子量为7.814 kD,理论等电点为4.72.  相似文献   

8.
水稻14-3-3蛋白家族的生物信息学分析   总被引:12,自引:0,他引:12  
金谷雷  汪旭升  朱军 《遗传学报》2005,32(7):726-732
通过隐马尔柯夫模型(Hidden Markov Model,HMM),对粳稻(Oryza sativa L.ssp.japonica)基因组的蛋白质数据库进行搜索,结果获得8个14—3—3蛋白的同源序列,其中发现4个新基因。通过对所有粳稻的14—3—3蛋白的DNA序列与各种表达序列标签(Expression Sequence Tags,ESTs)进一步比对,为14-3-3蛋白找到了ESTs的证据。结果说明这些基因在水稻不同的处理和不同的部位都有所表达,而且不同成员之间的表达模式存在较大的差异。蛋白质多序列联配分析结果表明,存在可能的功能多态位点。通过基因结构和染色体定位的分析,确认了水稻基因组中存在E样和非E样两类14-3-3蛋白。此外,对目前植物中的14—3—3家族作了初步的进化分析。  相似文献   

9.
根据葡萄的类黄酮3′-羟化酶(F3'H)基因全长cDNA序列Blast所得棉花的EST序列设计引物,以开花后16 d(DPA16)的新彩棉5号(xC-5)纤维为材料,利用RACE和RT-PCR技术分离得到了2个类黄酮3′-羟化酶基因cDNA序列,此2个序列编码区完全相同,仅在3'UTR区存在片段长短的差异,推测可能是基因转录后加工方式不同所造成.克隆所获得的棉花F3'H基因编码区全长1 533 bp,编码510个氨基酸,氨基酸序列分析预测表明,该基因所编码蛋白含有一个跨膜结构域,是一种分泌蛋白,定位于内质网上,并含有一段与细胞色素P450功能区相匹配的保守功能域;序列比对结果表明,棉花F3'H基因与其他多个物种的F3'H基因在氨基酸序列上有较高的同源性;聚类分析结果表明,棉花F3'H蛋白与双子叶植物大豆的F3'H亲缘关系较为接近,而与单子叶植物高梁等作物则较远.  相似文献   

10.
野生小花草玉梅(Anemone rivularis var.flore-minore)正常植株和花被片自然变异植株的外观形态差异很大,该研究以二者为材料,利用常规PCR和高效热不对称PCR(Hi-Tail PCR)技术从其正常和变异植株的基因组中各分离得到1个B类基因。序列分析证明,二者隶属于B类MADS-box基因AP3家族的旁系同源基因AP3-3分枝,分别命名为NArAP3-3(正常植株)和VArAP3-3(变异植株)。NArAP3-3基因全长3 795bp,VArAP3-3基因全长3 898bp,二者均含有1个666bp的开放阅读框(ORF),可编码221个氨基酸,具有典型的植物MADS-box基因结构,其编码肽链包含了MADS区、K区、Ⅰ区和C区。对比NArAP3-3和VArAP3-3基因的全长序列,发现VArAP3-3基因比NArAP3-3多了1段49bp的插入,且在ORF序列与NArAP3-3基因相比有4个碱基突变。对二者的全长序列、所编码的221个氨基酸及插入序列的生物信息学分析显示,二者在基因启动子、蛋白质基本性质、结构功能域、二级三级预测结构等方面均有差异,推测这些差异可能是花被片变异产生的原因之一。该研究结果为进一步探索其变异机制奠定了基础。  相似文献   

11.
The 14-3-3 family of phosphoserine/phosphothreonine-binding proteins dynamically regulates the activity of client proteins in various signaling pathways that control diverse physiological and pathological processes. In response to environmental cues, 14-3-3 proteins orchestrate the highly regulated flow of signals through complex networks of molecular interactions to achieve well-controlled physiological outputs, such as cell proliferation or differentiation. Accumulating evidence now supports the concept that either an abnormal state of 14-3-3 protein expression, or dysregulation of 14-3-3/client protein interactions, contributes to the development of a large number of human diseases. In particular, clinical investigations in the field of oncology have demonstrated a correlation between upregulated 14-3-3 levels and poor survival of cancer patients. These studies highlight the rapid emergence of 14-3-3 proteins as a novel class of molecular target for potential therapeutic intervention. The current status of 14-3-3 modulator discovery is discussed.  相似文献   

12.
14-3-3 proteins in neurological disorders   总被引:1,自引:0,他引:1  
14-3-3 proteins were originally discovered as a family of proteins that are highly expressed in the brain. Through interactions with a multitude of binding partners, 14-3-3 proteins impact many aspects of brain function including neural signaling, neuronal development and neuroprotection. Although much remains to be learned and understood, 14-3-3 proteins have been implicated in a variety of neurological disorders based on evidence from both clinical and laboratory studies. Here we will review previous and more recent research that has helped us understand the roles of 14-3-3 proteins in both neurodegenerative and neuropsychiatric diseases.  相似文献   

13.
Cyclin Y is a highly conserved cyclin among eumetazoans, yet its function and regulation are poorly understood. To search for Cyclin Y-interacting proteins, we screened a yeast two-hybrid library using human Cyclin Y (CCNY) as a bait and identified the following interactors: CDK14 and four members of the 14-3-3 family (ε,β,η,τ). The interaction between CCNY and 14-3-3 proteins was confirmed both in vitro and in vivo. The results showed that Ser-100 and Ser-326 residues in CCNY were crucial for 14-3-3 binding. Interestingly, binding of CCNY to 14-3-3 significantly enhanced the association between CCNY and CDK14. Our findings may add a new layer of regulation of CCNY binding to its kinase partner.  相似文献   

14.
About thirty years after the initial identification of 14-3-3 proteins in mammalian brain, they are now thought to be ubiquitous among eukaryotes. We identified five cDNAs encoding 14-3-3 proteins of Nicotiana tabacum L. using a polymerase chain reaction (PCR)-based screening strategy. A phylogenetic analysis was carried out with 14-3-3 amino-acid sequences from twelve plant species. The results showed that 14-3-3 proteins of plants can be divided into at least five different subgroups. Four of these subgroups resulted from early gene duplication events that happened prior to the speciation of most of the plant species considered. Interestingly, 14-3-3 epsilon isoforms from mammals and insects form one subgroup together with epsilon-like isoforms from plants. The 14-3-3 genes known from monocots descend from the same ancestor, forming the fifth subgroup. Received: 30 June 1997 / Accepted: 29 August 1997  相似文献   

15.
The 14-3-3 protein family interacts with more than 2000 different proteins in mammals, as a result of its specific phospho-serine/phospho-threonine binding activity. Seven paralogs are strictly conserved in mammalian species. Here, we show that during adipogenic differentiation of 3T3-L1 preadipocytes, the level of each 14-3-3 protein paralog is regulated independently. For instance 14-3-3β, γ, and η protein levels are increased compared to untreated cells. In contrast, 14-3-3ε protein levels decreased after differentiation while others remained constant. In silico analysis of the promoter region of each gene showed differences that explain the results obtained at mRNA and protein levels.  相似文献   

16.
Gao Y  Jiang M  Yang T  Ni J  Chen J 《Cell research》2006,16(6):539-547
hPFTAIRE1 (PFTK1), a Cdc2-related protein kinase, is highly expressed in human brain. It exhibits cytoplasmic distribution in Hela cells, although it contains two nuclear localization signals (NLSs) in its N-terminus. To search for its substrates and regulatory components, we screened a two-hybrid library by using the full-length hPFTAIRE1 as a bait. Four 14-3-3 isoforms (β,ε,η,τ) were identified interacting with the hPFTAIRE1. We found a putative 14-3-3 binding consensus motif(RHSSPSS) in the hPFTAIRE 1, which overlapped with its second NLS. Deletion of the RHSSPSS motif or substitution of Ser^119 gwithAla in the conserved binding motif abolished the specific interaction between the hPFTAIRE 1 and the 14-3 -3 proteins. The mutant S 120A hPFTAIRE1 also showed a weak interaction to the 14-3-3 proteins. The results suggested that the Ser^119 is crucial for the interaction between hPFTAIREI and the 14-3-3 proteins. All the hPFTAIRE1 mutants distributed in cytoplasm of Hela cells and human neuroblastoma cells (SH-SY5Y) when fused to the C-terminus of a green fluorescent protein (GFP), indicating that binding with the 14-3-3 proteins does not contribute to the subcellular localization of the hPFTAIRE1, although the binding may be involved in its signaling regulation.  相似文献   

17.
14-3-3蛋白家族是一组高度保守的可溶性酸性蛋白质,分子量在28~33kD之间,广泛分布于各种真核生物之中。该蛋白能够特异地结合含有磷酸化丝氨酸或苏氨酸的肽段,参与多种信号转导途径。14-3-3蛋白调节着许多重要细胞生命活动,如:新陈代谢、细胞周期、细胞生长发育、细胞的存活和凋亡以及基因转录,该蛋白家族异常与疾病的发生密切相关,尤其是14-3-3蛋白在脑脊液中的分布与一些神经系统疾病密切相关。14-3-3蛋白已成为一些疾病的临床诊断指标,其作为疾病治疗的靶点也在研究之中。主要阐述了14-3-3蛋白的结构、功能、及其在疾病治疗中的应用。  相似文献   

18.
血吸虫病是严重危害人类健康的人兽共患病之一,在全球范围内,血吸虫病曾在76个国家和地区流行,有超过2亿人感染了血吸虫病。目前,世界上采取了一些人畜同步治疗等综合防治措施,虽取得了一定的成效,但仍面临着成本高、再感染率高等一系列问题。因此,寻找新的治疗药物、疫苗候选分子以及开发高度特异且敏感的标准化免疫诊断试剂是当前日本血吸虫病基础研究的重要内容。主要对WHO提出的最具潜力的疫苗候选分子血吸虫GST蛋白以及参与血吸虫许多生物学功能的14-3-3蛋白的最新研究进展进行一些阐述。  相似文献   

19.
Proteins of the 14-3-3 family are universal participate in multiple cellular processes. However, their exact role in the pathogenesis of prion diseases remains unclear. In this study, we proposed that human PrP was able to form molecular complex with 14-3-3β. The domains responsible for the interactions between PrP and 14-3-3β were mapped at the segments of amino acid (aa) residues 106–126 within PrP and aa 1–38 within 14-3-3β. Homology modeling revealed that the key aa residues for molecular interaction were D22 and D23 in 14-3-3β as well as K110 in PrP. Mutations in these aa residues inhibited the interaction between the two proteins in vitro. Our results also showed that recombinant PrP encouraged 14-3-3β dimer formation, whereas PrP106–126 peptide inhibited it. Recombinant 14-3-3β disaggregated the mature PrP106–126 fibrils in vitro. Moreover, the PrP–14-3-3 protein complexes were observed in the brain tissues of normal and scrapie agent 263 K infected hamsters. Colocalization of PrP and 14-3-3 was seen in the cytoplasm of human neuroblastoma cell line SH-SY5Y, as well as human cervical cancer cell line HeLa transiently expressing full-length human PrP. Our current data suggest the neuroprotection of PrPC and neuron damage caused by PrPSc may be associated with their functions of 14-3-3 dimerization regulation.  相似文献   

20.
PRAS40是近几年新发现的Akt作用底物,14-3-3结合蛋白。为确定PRAS40与14-3-3蛋白7种亚基间相互作用关系,利用gateway方法构建用于酵母双杂交系统的诱饵质粒pEG-PRAS40及转录激活质粒pJG-PRAS40,将PRAS40和14-3-3各亚型质粒分别作为诱饵蛋白质粒及转录激活质粒共转化酵母细胞EGY48,通过氨基酸营养缺陷生长实验及β-半乳糖苷酶显色反应分析两种蛋白相互作用程度。酶切鉴定证实成功地构建了pEG-PRAS40和pJG-PRAS40质粒,酵母双杂交实验结果显示PRAS40可以和14-3-3亚型tau,beta,zeta及epsilon相结合,epsilon较强,beta和zeta次之,tau较弱。此结果将为深入研究PRAS40与14-3-3蛋白生物学功能及发现药物靶标奠定基础。  相似文献   

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