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1.
3′-N-去苯甲酰-2-脱氧紫杉醇苯甲酰转移酶(DBTNBT)是催化紫杉醇生物合成最后一步反应所需要的酶,负责将带有不完全侧链的紫杉醇前体催化形成紫杉醇。利用蔓地亚红豆杉的总DNA和总RNA为模板,采用PCR和RT-PCR技术克隆出DBTNBT基因的DNA序列和cDNA序列,测序结果显示长度分别为1465bp和1362bp,编码438个氨基酸的多肽。同源性比较分析结果表明,其碱基序列与已经报道的蔓地亚红豆杉的DBTNBT基因的一致性为99%,其氨基酸序列与已经报道的蔓地亚红豆杉的DBTNBT氨基酸序列的一致性为96%。DNA序列和cDNA序列比对发现该基因含有1个内含子。利用SWISS-PROT、DNAMAN等生物信息学工具对其蛋白序列进行了分析,为利用基因工程的方法生产紫杉醇或其前体物质提供了分子基础。  相似文献   

2.
血红密孔菌(Pycnoporussanguineus)漆酶基因的克隆与序列分析   总被引:2,自引:0,他引:2  
为克隆血红密孔菌 (Pycnoporussanguineus)漆酶基因 ,根据真菌漆酶氨基酸序列保守区设计了 1对简并引物 .以血红密孔菌基因组DNA为模板 ,PCR扩增出长 12 2 7bp的漆酶基因片段 .以此序列为基础 ,通过 5′及 3′RACE技术克隆出漆酶全长cDNA序列 ,序列长为 190 2bp ,其 5′端和 3′端非编码区长分别为 5 1bp和 2 97bp ,开放阅读框长 15 5 4bp ,编码 5 18个氨基酸的蛋白 .该蛋白具有 4个铜离子结合区域 ,预测其相对分子量为 5 6 313 2 ,等电点为 5 5 9,其氨基酸序列与Pycnoporuscinnabarinus漆酶 (lcc3 2 )的同源性最高 ,为 96 % .以该cDNA编码区的两端序列为引物 ,PCR扩增得到漆酶的长度为 2 15 4bp的全长DNA序列 ,序列中包括 10个内含子序列 ,长为 5 2~ 70bp  相似文献   

3.
为获得不易感动脉粥样硬化动物北京鸭卵磷脂胆固醇酰基转移酶 (LCAT)的cDNA和蛋白质序列 ,分析其结构特点 .以从北京鸭肝脏mRNA反转录获得的cDNA一链为模板 ,应用SMART RACE技术 ,获得了北京鸭LCAT的cDNA序列 ,推导出其蛋白质氨基酸序列 ,应用分子生物学软件对该蛋白的一级、二级结构进行分析和比较 .北京鸭LCATcDNA (在GenBank中的注册号为AF32 4 887)全长 195 3bp ,其中开放阅读框架 135 6bp ,编码 4 5 1个氨基酸 ,包括一个由 2 3个氨基酸构成的疏水性信号肽和一个由 4 2 8个氨基酸组成的成熟蛋白 .该成熟蛋白比人LCAT在C端多 12个氨基酸 ,其与鸡、人、家兔的同源性依次为 98%、83%和 82 % .与其它种属LCAT蛋白序列的比较结果表明 ,北京鸭LCAT蛋白质序列虽然在长度上和结构上与其它种属有一定的差异 ,但序列中与酶催化活性相关的序列均非常保守  相似文献   

4.
首先运用在线生物学软件对日本三角涡虫(Degusia japonica)热休克蛋白70(DjHSP70)氨基酸序列进行亲水区分析,发现该蛋白C-端含有较多亲水性氨基酸,然后以该段多肽序列为基础构建原核表达载体.采用PCR方法扩增450 bp cDNA片段,编码DjHSP70 C-端150个氨基酸多肽.将双酶切的cDNA...  相似文献   

5.
[目的]克隆决明丙二酰Co A:ACP转酰基酶(MCAT)基因并做序列分析。[方法]采用RACE法从c DNA中扩增出决明丙二酰Co A:ACP转酰基酶(MCAT)的CDS全长序列,推测出MCAT基因编码的氨基酸序列并进行序列分析。[结果]分析结果显示MCAT的CDS全长1 253bp,编码405个氨基酸。通过序列比对分析发现决明MCAT蛋白包含一个酰基转移酶超家族结构域,并且发现了一段高度保守的七肽模序。[结论]获得了决明MCAT的CDS全长,其编码的蛋白可能催化丙二酰Co A的转酰基反应,为决明脂肪酸的合成通路的阐明以及后期的决明脂肪酸的基因工程研究打下了坚实的基础。  相似文献   

6.
毛木耳漆酶基因的克隆、序列分析及其鉴定   总被引:3,自引:0,他引:3  
杨建明  孟鑫  徐鑫  张磊  李强  咸漠  潘迎捷 《微生物学通报》2008,35(11):1708-1714
本文利用PCR和RACE技术首次从毛木耳AP4菌株中获得编码漆酶基因的cDNA及其基因组全长序列,基因组大小为2514 bp.通过比较该漆酶基因的cDNA和基因组DNA的全长序列,发现该基因包含14个外显子和13个内含子.cDNA序列的全长为1972 bp,其包含一个完整的ORE长度为1860 bp,编码619氨基酸,推测的分子量大小为68 kD,等电点pI为5.15.在氨基酸序列的氨基末端存在一个信号肽序列,同时该基因还包括含铜氧化酶的三个功能结构域KOG1263、SufI和pfam00394.氨基酸序列与GenBank中登录的真菌漆酶蛋白序列比对表明:该氨基酸序列与其它真菌漆酶蛋白序列有较高的同源性,氨基酸序列相同性最高达41%,相似性为58%,并且含有真菌漆酶的四个保守的Cu-bind结构域.将获得的漆酶基因lacl与毕赤酵母表达载体pPIC9K连接,构建重组质粒pYH3660,将其转化到毕赤酵母中,经甲醇诱导该基因在第10天产酶高达123 IU/L,并通过Native SDS-PAGE电泳获得预期大小的漆酶蛋白条带.结构分析和功能验证均表明:本研究获得的基因lacl为漆酶基因.  相似文献   

7.
应用从EST出发克隆基因家族新成员的策略 ,在人类睾丸组织cDNA文库中分离出 1个新的全长cDNA片段 ,它编码的蛋白产物与 (UDP 半乳糖苷 :N 乙酰基葡萄糖胺 )半乳糖苷转移酶 (GalT)有较高的同源度 .分析表明 ,在其 2 173bp的序列中含有 1个长 10 3 2bp的开放读框 ,编码 3 44个氨基酸 .基于该基因与半乳糖苷转移酶基因家族各成员的同源关系 ,尤其是与G .gallus β 1,4 半乳糖苷转移酶Ⅰ型(CKⅠ )的关系密切 ,这个基因的蛋白产物被命名为人类 β 1,4 半乳糖苷转移酶同源蛋白Ⅰ型 .Northern杂交发现它在被检测的人体 16种组织中均有表达 ,但丰度各异 .通过与含人单条染色体的人 /啮齿类的杂种细胞DNA进行Southern杂交 ,证明该基因位于 3号染色体上 .  相似文献   

8.
根据已克隆的唾液酸转移酶的保守区的序列,以人胎肝mRNA为模板扩增出150bp的片段并测序。其中一个片段(s38)与已克隆的唾液酸转移酶的活性中心有57%~97%的同源性。根据s38的序列合成寡核苷酸并标记后用作探针筛选人胎肝cDNA文库。从文库中分离了一个编码α2,3-唾液酸转移酶的cDNA。该cDNA序列含一个编码340个氨基酸的开放读框,推导的氨基酸序列与人颌下腺(Galβ1,GalNAc。Α2,3-唾液酸转移酶相同,与猪颌下腺α2,3-唾液酸转移酶有83.2%的同源性。表明从人胎肝cDNA文库中分离的cDNA所编码的蛋白为Galβ1,3GalNAcα2,3-唾液酸转移酶。  相似文献   

9.
扩展青霉PF898碱性脂肪酶cDNA的克隆及序列分析   总被引:13,自引:0,他引:13  
扩展青霉 (Penicilliumexpansum)PF898可产生一种具有工业价值的碱性脂肪酶 (PEL) .在测定了其N端 12个氨基酸残基序列的基础上 ,通过RT PCR、5′RACE、基因克隆及序列测定 ,获得了PEL完整的cDNA序列 (GenBank登录号为AF2 84 0 6 4 ) .cDNA全长 10 5 0bp ,包括PEL编码区、3′非翻译区和部分 5′非翻译区基因的序列 .编码区cDNA由 85 5个碱基组成 ,编码 1个由 2 85个氨基酸残基组成的酶蛋白 ,其信号肽及前肽部分由 2 7个氨基酸残基组成 ,成熟肽部分由 2 5 8个氨基酸残基组成 .根据氨基酸组成推导该脂肪酶蛋白的分子量为 2 7 3kD .该脂肪酶的氨基酸序列 130~ 134位上有各类脂肪酶中普遍存在的G X S X G保守序列  相似文献   

10.
采用RACE技术,从苦荞(Fagopyrum tatarium)中克隆得到一个谷胱甘肽转移酶(Glutathione S-transferase protein,FtGST)基因。序列分析表明,FtGST基因全长DNA序列和cDNA序列编码区分别为746 bp和666 bp,DNA序列含有一个长度为80 bp(342-421 bp)的内含子;开放阅读框(ORF)长666 bp,编码221个氨基酸。生物信息学分析表明,FtGST基因推导的蛋白质含有Tau家族典型的底物结合口袋、谷胱甘肽结合位点(G-site)和疏水性底物结合位点(H-site)氨基酸残基,表明FtGST为Tau家族蛋白。  相似文献   

11.
Malonyl-CoA:acyl-carrier protein transacylase (MCAT), which transfers the malonyl group from malonyl-CoA to holo-acyl carrier protein (ACP), is a key enzyme in fatty acid biosynthesis. Schizochytrium sp. TIO1101 is a marine protist with high levels of docosahexaenoic acid accumulation. In this study, the putative fabD gene coding MCAT was isolated from Schizochytrium sp. TIO1101. The Schizochytrium MCAT gene (ScTIOfabD) contained an 1176 bp open reading frame encoding a protein of 391 amino acids. The ScTIOfabD gene exhibited high novelty in nucleotide and amino acid sequence. The highest amino acid identity was only 35 % between ScTIOMCAT and the reported MCATs. Further studies demonstrated that ScTIOMCAT could bind malonyl-CoA directly and transfer malonyl group from malonyl-CoA to the ACP domain in vitro. Phylogenetic analysis suggested that ScTIOMCAT was relative close to MCATs of yeast strains. Overexpression of ScTIOMCAT in Saccharomyces cereviseae significantly increased the MCAT activity, without negative effects on the growth rate of the host strain. In addition, ScTIOMCAT generated 16.8 and 62 % increase in biomass and fatty acid accumulation, respectively, and did not alter the profile of fatty acid. Our results indicated that the novel MCAT gene from Schizochytrium sp. TIO1101 was crucial for fatty acid synthesis and had potential applications for genetic modifications of oil-producing species.  相似文献   

12.
Malonyl coenzyme A (CoA)-acyl carrier protein (ACP) transacylase (MCAT) is an essential enzyme in the biosynthesis of fatty acids in all bacteria, including Mycobacterium tuberculosis. MCAT catalyzes the transacylation of malonate from malonyl-CoA to activated holo-ACP, to generate malonyl-ACP, which is an elongation substrate in fatty acid biosynthesis. To clarify the roles of the mycobacterial acyl carrier protein (AcpM) and MCAT in fatty acid and mycolic acid biosynthesis, we have cloned, expressed, and purified acpM and mtfabD (malonyl-CoA:AcpM transacylase) from M. tuberculosis. According to the culture conditions used, AcpM was produced in Escherichia coli in two or three different forms: apo-AcpM, holo-AcpM, and palmitoylated-AcpM, as revealed by electrospray mass spectrometry. The mtfabD gene encoding a putative MCAT was used to complement a thermosensitive E. coli fabD mutant. Expression and purification of mtFabD resulted in an active enzyme displaying strong MCAT activity in vitro. Enzymatic studies using different ACP substrates established that holo-AcpM constitutes the preferred substrate for mtFabD. In order to provide further insight into the structure-function relationship of mtFabD, different mutant proteins were generated. All mutations (Q9A, R116A, H194A, Q243A, S91T, and S91A) completely abrogated MCAT activity in vitro, thus underlining the importance of these residues in transacylation. The generation and characterization of the AcpM forms and mtFabD opens the way for further studies relating to fatty acid and mycolic acid biosynthesis to be explored in M. tuberculosis. Since a specific type of FabD is found in mycobacterial species, it represents an attractive new drug target waiting to be exploited.  相似文献   

13.
Probing protein extracts from exponentially growing and stationary phase cultures of Mycobacterium bovis BCG with anti-phospho amino acid antibodies revealed a 31-kDa anti-phospho threonine antibody-reactive protein specific to growing culture. The corresponding protein was purified via two-dimensional gel electrophoresis and identified via mass spectrometry to be malonyl coenzyme A:acyl carrier protein transacylase (MCAT), a component of the fatty acid biosynthetic pathway. MCAT tagged with histidine reacted with anti-phospho threonine antibody and was positive in an in-gel chemical assay for phospho proteins. Analysis of the growth phase dependence of MCAT-His phosphorylation and protein levels showed that phosphorylated MCAT-His can be detected only in growing culture. In contrast, MCAT-His protein level was growth phase-independent. These results suggest that MCAT may be a substrate of a protein kinase and phosphatase, and that aspects of fatty acid synthesis in tubercle bacilli are regulated by protein phosphorylation.  相似文献   

14.
15.
Based on the conserved amino acid sequence (DLKPEN) of serine-threonine protein kinase from several fungi, a degenerate primer was designed and synthesized. Total RNA was isolated from the thermophilic fungus Thermomyces lanuginosus. Using RACE-PCR, full-length cDNA of a putative serine-threonine protein kinase gene was cloned from T. lanuginosus. The full-length cDNA of T. lanuginosus protein kinase was 2551 bp and contained an 1806 bp open reading frame encoding a putative protein kinase precursor of 601 amino acid residues. Sequencing analysis showed that the cloned cDNA of T. lanuginosus had consensus protein kinase sequences. Conservative amino acid subdomains which most serine-threonine kinases contain can be found in the deduced amino acid sequence of T. lanuginosus putative protein kinase. Comparison results showed that the deduced amino acid sequence of T. lanuginosus putative protein kinase was highly homologous to that of Neurospora crassa dis1-suppressing protein kinase Dsk1. The putative protein kinase contained three arginine/serine-rich (SR) regions and two transmembrane domains. These showed that it might be a novel putative serine-threonine protein kinase.  相似文献   

16.
The ftsH gene is essential for cell viability in Escherichia coli. We cloned and sequenced the wild-type ftsH gene and the temperature-sensitive ftsH1(Ts) gene. It was suggested that FtsH protein was an integral membrane protein of 70.7 kDa (644 amino acid residues) with a putative ATP-binding domain. The ftsH1(Ts) gene was found to have two base substitutions within the coding sequence corresponding to the amino acid substitutions Glu-463 by Lys and Pro-587 by Ala. Homology search revealed that an approximately 200-amino-acid domain, including the putative ATP-binding sequence, is highly homologous (35 to 48% identical) to the domain found in members of a novel, eukaryotic family of putative ATPases, e.g., Sec18p, Pas1p, CDC48p, and TBP-1, which function in protein transport pathways, peroxisome assembly, cell division cycle, and gene expression, respectively. Possible implications of these observations are discussed.  相似文献   

17.
Abstract Malolactic enzyme is the key enzyme in the degradation of L-malic acid by lactic acid bacteria. Using degenerated primers designed from the first 20 N-terminal amino acid sequence of lactococcal malolactic enzyme, a 60-bp DNA fragment containing part of the mleS gene was amplified from Lactococcus lactis in a polymerase chain reaction. This specific probe was used to isolate two contiguous fragments covering the gene as a whole. The 1.9-kb region sequenced contains an open reading frame of 1623 bp, coding a putative protein of 540 amino acids. The deduced amino acid sequence reveals that lactococcal putative protein (Mlep) is highly homologous to the malic enzyme of other organisms. Expression of the mleS gene in Escherichia coli results in malolactic activity.  相似文献   

18.
19.
In both plants and bacteria, de novo fatty acid biosynthesis is catalysed by a type II fatty acid synthetase (FAS) system which consists of a group of eight discrete enzyme components. The introduction of heterologous, i.e. bacterial, FAS genes in plants could provide an alternative way of modifying the plant lipid composition. In this study the Escherichia coli fabD gene, encoding malonyl CoA-ACP transacylase (MCAT), was used as a model gene to investigate the effects of over-producing a bacterial FAS component in the seeds of transgenic plants. Chimeric genes were designed, so as not to interfere with the household activities of fatty acid biosynthesis in the earlier stages of seed development, and introduced into tobacco and rapeseed using the Agrobacterium tumefaciens binary vector system. A napin promoter was used to express the E. coli MCAT in a seed-specific and developmentally specific manner. The rapeseed enoyl-ACP reductase transit peptide was used successfully, as confirmed by immunogold labelling studies, for plastid targeting of the bacterial protein. The activity of the bacterial enzyme reached its maximum (up to 55 times the maximum endogenous MCAT activity) at the end of seed development, and remained stable in mature transgenic seeds. Significant changes in fatty acid profiles of storage lipids and total seed lipid content of the transgenic plants were not found. These results are in support of the notion that MCAT does not catalyse a rate-limiting step in plant fatty acid biosynthesis.  相似文献   

20.
Using a degenerative probe designed according to the most conservative region of a known Lys- and His-specific amino acid transporter (LHT1) from Arabidopsis, we isolated a full-length cDNA named OsHT (histidine transporter of Oryza sativa L.) by screening the rice cDNA library. The cDNA is 1.3kb in length and the open reading frame encodes for a 441 amino acid protein with a calculated molecular mass of 49 kDa. Multiple sequence alignments showed that OsHT shares a high degree of sequence conservation at the deduced amino acid level with the Arabidopsis LHT1 and six putative lysine and histidine transporters. Computational analysis indicated that OsHT is an integral membrane protein with 11 putative transmembrane helices. This was confirmed by the transient expression assay because the OsHT-GFP fusion protein was, indeed, localized mainly in the plasma membrane of onion epidermal cells. Functional complementation experiments demonstrated that OsHT was able to work as a histidine transporter in Saccharomyces cerevisiae, suggesting that OsHT is a gene that encodes for a histidine transporter from rice.This is the first time that an LHT-type amino acid transporter gene has been cloned from higher plants other than A rabidopsis.  相似文献   

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