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1.
采用RT-PCR及RACE法,克隆得到鳜鱼(Siniperca chuatsi)肝胰脏胰蛋白酶(trypsin, Try)、淀粉酶(amylase, Amy)基因 cDNA全序列.结果表明,鳜鱼Try基因cDNA全长为896 bp,其中开放阅读框 (open reading frame,ORF)为744 bp,编码247个氨基酸. 序列同源性分析发现,鳜鱼Try与 斑马鱼(Danio rerio)、非洲爪蟾(Xenopus laevis)、 小鼠Try和人TRY氨基酸序列同源性分别为81.4%、75.3%、74.5%和71.4%.鳜鱼Amy 基因cDNA全长为1 647 bp,其中ORF为1 539 bp,编码512个氨基酸.鳜鱼Amy与斑马鱼 、非洲爪蟾、小鼠Amy和人AMY氨基酸序列同源性分别为79.7%、75.4%、71.9%和70.9%. 同时对鳜鱼基因组进行PCR,获得鳜鱼Try、Amy与胃蛋白酶原(pepsinogen, Pep)全基因组DNA序列.序列分析表明,鳜鱼Try基因由4个内含子和5个外显子组成,全长1 362 bp;鳜鱼Amy基因由8个内含子和9个外显子组成,全长4 267 bp;鳜鱼Pep基因由8个内含子和9个外显子组成,全长 4 032 bp,与其它脊椎动物基因结构相似.应用Genome walker方法在鳜鱼克隆得到长度分别为1 189 bp、413 bp和527 bp的Try、Amy和Pep基因的5′侧翼区序列以及1段长为704 bp的Pep 基因3′侧翼区序列,并利用相关软件预测其中具有多个可调节其表达的调控元件.鳜鱼Try、Am y和Pep基因组全序列的克隆及其序列、结构分析和分子系统进化等的研究,为鱼类消化代谢相关基因的生理功能及表达调控机理进一步研究提供依据.  相似文献   

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旨在克隆天祝白牦牛胰岛素样生长因子2(IGF-2)基因编码区全长cDNA序列,为研究该基因的生理功能奠定基础。运用cDNA末端快速扩增(RACE)技术获得天祝白牦牛IGF-2基因全长cDNA序列。扩增获得天祝白牦牛IGF-2基因全长cDNA序列为1 060 bp(GenBank登录号:KF682139),ORF长540 bp,编码179个氨基酸。其编码的氨基酸与已报道哺乳动物IGF-2氨基酸序列同源性在80%-92%之间。天祝白牦牛IGF-2基因的成功克隆为进一步研究该基因的功能奠定了基础。  相似文献   

3.
电子克隆提供了一种利用基因组数据库克隆新基因全长cDNA序列的策略。利用小鼠Irak-1基因编码序列(NM_008363)为种子序列进行电子克隆获得了牛Irak-1基因完整编码序列。然后,用生物信息学方法分析了该基因的结构,微卫星位点,密码子偏性和氨基酸的同源性等。结果表明:该基因cDNA全长2 645bp,无内含子,最大开放阅读框2 157bp,编码718个氨基酸,与小鼠的同源性为77%。  相似文献   

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为了探索白桂木凝集素在分子水平的作用机制,本研究采用cDNA末端快速扩增(rapid amplification of cDNA ends,RACE)方法首次克隆了白桂木凝集素(Atrocarpus hypargyreus lectin,AHL)cDNA序列的全长。序列分析与预测结果表明,AHL cDNA序列全长933 bp,含有一个编码40个氨基酸的信号肽和1个编码235个氨基酸的708 bp开放阅读框(ORF);AHL分子量为25 579.2 Da。同源性分析表明AHL与木菠萝家族相关凝集素氨基酸序列有很高的同源性。  相似文献   

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新基因全长cDNA序列很难获得,但电子克隆却提供了基因克隆的一种策略.利用小鼠Pbx-1基因编码序列(NM_183355)为种子序列进行电子克隆获得牛Pbx-1基因完整编码序列.然后,用生物信息学方法分析了牛的Pbx-1基因的结构,密码子偏性和氨基酸的同源性等.结果表明:该基因cDNA全长1 754 bp,无内含子,最大开放阅读框1 305 bp.编码434个氨基酸.预测其编码的蛋白分子量为47 189.5 Da,与小鼠的同源性为81%.  相似文献   

6.
甘蔗ATP合酶基因的电子克隆及生物信息学分析   总被引:2,自引:0,他引:2  
目的:运用电子克隆的方法获得甘蔗中的ATP合酶基因。方法:以小麦中一个ATP合酶基因为种子序列,对甘蔗的EST数据库进行搜索,应用相关软件进行聚类分析、拼接组装和延长。结果:获得一个ATP合酶基因SATPC1的cDNA序列全长,该序列长1 415bp,包含一个完整的1 077bp的ORF,编码358个氨基酸,且与水稻、玉米、高粱和葡萄等其他植物的ATP合酶具有高度的同源性。结论:电子克隆获得的cDNA序列为完整的甘蔗ATP合酶基因全长cDNA。  相似文献   

7.
利用RACE及克隆等方法获得了异育银鲫(Carassius auratus gibelio)c型溶菌酶基因全长cDNA序列.序列分析表明,所克隆的异育银鲫溶菌酶的cDNA全长751 bp,包括溶菌酶基因开放阅读框(ORF)438 bp,5′ 非编码区(UTR)为109 bp和3′ UTR为204 bp.438 bp ORF共编码146个氨基酸,其成熟肽的分子量预测值为14 543.6,理论等电点为8.86.通过ClustalW软件,将异育银鲫和其它多个物种c型溶菌酶的氨基酸序列进行多序列比对发现,所克隆的异育银鲫溶菌酶编码的氨基酸序列中存在c型溶菌酶的活性中心(Glu53和Asp69),且与活性位点相邻的氨基酸序列高度保守.同时,8个保守的半胱氨酸残基也与其它物种的c型溶菌酶相一致.结合BLASTN分析的结果,可以确认所获得的异育银鲫溶菌酶cDNA序列属于c型溶菌酶.异育银鲫c型溶菌酶和人c型溶菌酶(pdb 1at6_)在蛋白质序列上有50%相似性,其三维(3-D)结构非常类似.通过氨基酸空间位置比较发现,两者具有类似的酶活中心,异育银鲫c型溶菌酶只能形成3个二硫键,比人少1个.荧光定量RT-PCR检测和溶菌酶活性测定显示,异育银鲫头肾和脾脏c型溶菌酶mRNA的表达量约为肝胰脏的2.9 倍和1.7 倍,异育银鲫头肾和脾脏的溶菌酶活性约为肝胰脏的6.2 倍和4倍.  相似文献   

8.
采用RT-PCR及RACE法分别克隆得到鳜鱼(Siniperca chuatsi)C-反应蛋白(C-reactive protein,CRP)cDNA全序列和斜带石斑鱼(Epinephelus coioides)α1-抗胰蛋白酶(α1-antitrypsin,AAT)cDNA全序列.鳜鱼CRP基因cDNA全长为914 bp,其中5'非翻译区(5'-UTR)为49 bp,3'非翻译区(3'-UTR)为199 bp,开放阅读框(ORF)为666 bp,编码222个氨基酸.序列同源性分析发现,推测的鳜鱼CRP氨基酸序列与小鼠(Mus musculus)、人类(Homo sapiens)、大鼠(Rattus,norvegicus)、非洲蟾蜍(Xenopus tropicalis)和中国鲎(Tachypleus tridentatus)的CRP氨基酸同源性分别为33.2%、32.4%、31.5%、24.9%和22.4%.斜带石斑鱼肝脏ATT基因cDNA全序列长1 785 bp,其中,5'-UTR为13 bp,3'-UTR为530 bp,ORF为1 242 bp,编码414个氨基酸.序列同源性分析发现,推测的斜带石斑鱼AAT氨基酸序列与斑马鱼(Danio rerio)、非洲爪蟾(X.laevis)、楔齿蜥(Sphenodon punctatus)、大鼠、人类、狒狒(Papio papio)和小鼠的AAT氨基酸序列同源性分别为59.2%、40%、38.6%、38.5%、37.7%、37%和36%.鳜鱼CRP基因和斜带石斑鱼AAT基因cDNA全序列的获得为其疾病相关分子机理研究奠定了基础,对今后进一步进行种苗育苗的研发,并以此为依据提高其人工育苗仔鱼成活率有重要意义.  相似文献   

9.
从一株产乳糖酶的亮白曲霉(Aspergillus candidus)中克隆到了乳糖酶基因组DNA及cDNA序列(EMBL ACCESSION No. AJ431643),序列分析表明,乳糖酶基因组DNA序列长3458bp,其中含有8个内含子,cDNA编码区长3015bp,共编码1005个氨基酸,前19个氨基酸为信号肽序列,氨基酸序列中共含有11个潜在的糖基化位点。将此基因与不同来源的乳糖酶基因序列进行比较发现,该基因与绝大多数乳糖酶基因同源性较低。虽与米曲霉ATCC 20423的乳糖酶序列同源性较高,但其在酶学性质上更优于后者,亮白曲霉的乳糖酶基因可能是一个具有更广阔的生产应用前景的新基因。   相似文献   

10.
猪CFL2b 基因cDNA克隆初步分析   总被引:5,自引:1,他引:4  
利用基因表达谱芯片分析法筛选出与大白猪高肌肉产量-肌纤维形成有关的CFL2b基因.参考人和小鼠CFL2b基因序列,采用SMART-RACE技术结合EST序列拼接技术,从猪骨骼肌肌肉中首次克隆了猪CFL2b的全长cDNA序列(GenBank登录号EU561660,EU561661),Northern杂交检测CFL2b基因 mRNA.结果表明,猪CFL2b基因含有2个转录本,长转录本3 012 bp,短转录本1 466 bp .CFL2b基因在多种真核生物中都有表达,且编码区序列非常保守,开放式读码框501 bp编码了166个氨基酸的蛋白质.氨基酸序列分析表明,猪CFL2基因与人和小鼠氨基酸同源性分别为100%和99.1%.核苷酸序列相似性分别为88.1%和74.9%.  相似文献   

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Mao P  Tao YX  Fukaya M  Tao F  Li D  Watanabe M  Johns RA 《IUBMB life》2008,60(10):684-692
Membrane-associated guanylate kinases (MAGUKs) act as scaffolds to coordinate signaling events through their multiple domains at the plasma membrane. The MAGUK SH3 domain is noncanonical and its function remains unclear. To identify potential binding partners of MAGUK SH3, the synapse-associated protein 102 (SAP102) SH3 domain was used as bait in a yeast two-hybrid screen of a mouse embryonic cDNA library. A mouse homologue of the Drosophila discs large tumor suppressor (Dlg, also known as SAP97) bound preferentially to SAP102 SH3. The 4347bp cDNA sequence encoded an 893 amino acid protein with 94% identity to mouse SAP97. A deleted region (33-aa) strongly suggests this is a novel splice variant, which we call Embryonic-dlg/SAP97 (E-dlg). The interaction of SAP102 and E-dlg was confirmed in mammalian cells. E-dlg can also bind to potassium channel Kv1.4 in a pull-down assay. E-dlg was highly expressed in embryonic and some adult mouse tissues, such as brain, kidney, and ovary. Furthermore, in situ hybridization showed that E-dlg was mostly expressed in olfactory bulb and cerebellum.  相似文献   

13.
A human homologue (GST1-Hs) of the yeast GST1 gene that encodes a new GTP-binding protein essential for the G1-to-S phase transition of the cell cycle was cloned from the cDNA library of human KB cells. The GST1-Hs cDNA contained a 1497 bp open reading frame coding for a 499 amino acid protein with mol. wt 55,754 and with the amino acid sequence homologies of 52.3 and 37.8% to the GST1 protein and polypeptide chain elongation factor EF1 alpha respectively. The regions potentially responsible for GTP binding and GTP hydrolysis were conserved in the GST1-Hs protein as well. When expressed in yeast cell, the GST1-Hs gene could complement the ts phenotype of yeast gst1 mutant. GST1-Hs and its mouse homologue were expressed in human fibroblasts and in various mouse cell types respectively, at relatively low levels in their quiescent states, and the level of those expressions increased rapidly, prior to the onset of DNA replication and the total RNA synthesis, when human or mouse fibroblasts were progressed out of the growth-arrested state by the addition of serum. A possible role of GST1-Hs in mammalian cell growth is discussed.  相似文献   

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柽柳(Tamarix androssowii)Tadir基因的克隆及分析   总被引:1,自引:0,他引:1  
在柽柳cDNA文库测序中获得了Tadir基因的全长cDNA序列,去除PolyA后,该基因全长724bp。其中5′非翻译区26bp,3′非翻译区143bp,开放阅读框(ORF)长555bp,编码184个氨基酸。基因编码蛋白的分子量为19.69kD,理论等电点为6.96。疏水性分析表明,蛋白的前41个氨基酸为亲水性的。该基因的Genbank登录号为DQ462418(基因),ABE73781(蛋白)。实时荧光定量PCR分析结果表明,0.4mol·L-1NaCl和NaHCO3胁迫后该基因表达量发生变化,其可能与柽柳的耐盐性有关。  相似文献   

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Zhou D  Chen S 《Nucleic acids research》2001,29(19):3939-3948
PNRC2 (proline-rich nuclear receptor co-regulatory protein 2) was identified using mouse steroidogenic factor 1 (SF1) as bait in a yeast two-hybrid screening of a human mammary gland cDNA expression library. PNRC2 is an unusual coactivator in that it is the smallest coactivator identified so far, with a molecular weight of 16 kDa, and interacts with nuclear receptors using a proline-rich sequence. In yeast two-hybrid assays PNRC2 interacted with orphan receptors SF1 and estrogen receptor-related receptor α1 in a ligand-independent manner. PNRC2 was also found to interact with the ligand-binding domains of estrogen receptor, glucocorticoid receptor, progesterone receptor, thyroid receptor, retinoic acid receptor and retinoid X receptor in a ligand-dependent manner. A functional activation function 2 domain is required for nuclear receptors to interact with PNRC2. Using the yeast two-hybrid assay, the region amino acids 85–139 was found to be responsible for the interaction with nuclear receptors. This region contains an SH3 domain-binding motif (SEPPSPS) and an NR box-like sequence (LKTLL). A mutagenesis study has shown that the SH3 domain-binding motif is important for PNRC2 to interact with all the nuclear receptors tested. Our results reveal that PNRC2 has a structure and function similar to PNRC, a previously characterized coactivator. These two proteins represent a new type of nuclear receptor co-regulatory proteins.  相似文献   

20.
The assembly of the lipid-linked oligosaccharide, Glc(3)Man(9)GlcNAc(2)-P-P-Dol, occurs on the rough ER membrane in an ordered stepwise manner. The process is highly conserved among eukaryotes. In order to isolate the human mannosyltransferase I (MT-I) gene involved in the process, we used the Saccharomyces cerevisiae MT-I gene ( ALG1 ), which has already been cloned. On searching the EST database with the amino acid sequence of the ALG1 gene product, we detected seven related human EST clones. A human fetal brain cDNA library was screened by PCR using gene-specific primers based on the EST nucleotide sequences and a 430 bp cDNA fragment was amplified. The cDNA library was rescreened with this 430 bp cDNA, and two cDNA clones (HR1-3 and HR1-4) were isolated and sequenced. On a homology search of the EST database with the nucleotide sequence of HR1-3, we detected a novel human EST clone, AA675921 (GenBank accession number). Based on the nucleotide sequences of AA675921 and HR1-4, we designed gene-specific PCR primers, which allowed to amplify a 1.8 kb cDNA from human fetal brain cDNA. This cDNA was cloned and shown to contain an ORF encoding a protein of 464 amino acids. We designated this ORF as Hmat-1. The amino acid sequence deduced from the Hmat-1 gene showed several highly conserved regions shared with the yeast and nematode MT-I sequences. Furthermore, this 1.8 kb cDNA successfully complemented the S. cerevisiae alg1-1 mutation, indicating that the Hmat-1 gene encodes the human MT-I and that the function of this enzyme was conserved between yeast and human.  相似文献   

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