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1.
马铃薯晚疫病菌全基因组分泌蛋白的初步分析 总被引:1,自引:0,他引:1
利用马铃薯晚疫病菌全基因组测序结果,结合计算机技术和生物信息学的方法,对马铃薯晚疫病菌的蛋白进行分析,为明确该病原菌与寄主互作的分子机制奠定基础。文章应用信号肽预测软件SignalP v3.0和PSORT,跨膜螺旋结构预测软件TMHMM-2.0和THUMBUP,GPI锚定位点预测软件big-PI Predictor,亚细胞器中蛋白定位分布预测软件TargetP v1.01,对已经公布的马铃薯晚疫病菌全基因组22 658个蛋白质氨基酸序列进行分析。结果发现,晚疫病菌全基因组编码蛋白中有671个为潜在的分泌型蛋白,占编码蛋白总数的3.0%。其中有45个分泌蛋白有功能方面的描述,其功能涉及细胞代谢、信号转导等方面;此外,还有一些与激发子类似的分泌蛋白,它们可能与晚疫病菌的毒性有关。 相似文献
2.
粗糙脉孢菌基因组分泌蛋白的初步分析 总被引:4,自引:0,他引:4
文章报道利用信号肽预测软件SignalP v3.0和PSORT,跨膜螺旋结构预测软件TMHMMv2.0和THUMBUP,GPI-锚定位点预测软件big-PI Predictor和亚细胞器中蛋白定位分布预测软件TargetP v1.01对粗糙脉孢菌全基因组数据库中已公布的10 082个氨基酸序列进行预测分析。结果表明在粗糙脉孢菌中有437个蛋白为分泌蛋白,编码这些蛋白最小的可读框(open reading frame,ORF)为252 bp,最大为6 604 bp,平均1 433 bp,分泌蛋白信号肽长度介于15~59个氨基酸之间。在437个分泌蛋白中,205个具有功能描述,主要包括各种酶类、细胞能量生成、运转以及自身修复、防卫等多种功能。这些蛋白所参与的生化过程可能发生在膜外的周质空间或是菌体外的场所,为该物种营养的摄取,以及对环境做出响应服务。
相似文献
3.
结合计算机技术和生物信息学的方法,采用组合的信号肽分析软件SignalPv3.0、TargetPv1.1、Big-PIpredictor、TMHMMv2.0和SecretomeP对已公布的1486个稻瘟菌(magnaporthegrisea)小蛋白基因的N-端氨基酸序列进行信号肽分析,同时系统分析了信号肽的类型及结构。分析结果表明,在1486个稻瘟病菌小蛋白中,119个具有N-端信号肽的典型分泌蛋白。其中116个具有分泌型信号肽,1个具RR-motif型信号肽,2个具信号肽酶II型信号肽。在稻瘟病菌基因组中,分泌型小蛋白的序列是高度趋异的,仅出现少数氨基酸组成完全一致的信号肽,为进一步确认具有相同信号肽的分泌蛋白是否具有同源性,分别用BLAST2SEQUENCES对具有相同信号肽的分泌蛋白进行了序列对比。结果表明,具有相同信号肽的分泌蛋白同源性非常高。同时还采用Sublocv1.0对1486个小蛋白的亚细胞位置进行了预测,结果显示小蛋白的可能功能场所包括细胞质、细胞外、线立体和细胞核,功能场所位于细胞核的小蛋白是最多的。 相似文献
4.
为了解多粘类芽孢杆菌(Paenibacillus polymyxa)分泌蛋白的典型特征,本研究通过SignalP、ProtCompB、TMHMM、Phobius、LipoP、TatP、MEME和BLAST等多种分析程序对多粘类芽孢杆菌SC2菌株的全基因组共5 439条蛋白质序列进行生物信息的综合分析。结果表明,共获得146个具有典型信号肽的SPⅠ(Signal peptidase Ⅰ)分泌蛋白。信号肽序列中出现频率最高的氨基酸依次是亮氨酸、丙氨酸和丝氨酸。对信号肽的切割位点分析发现与枯草芽孢杆菌等一致,均为A-X-A型。通过MEME对信号肽序列进行分析发现存在一种保守基序。最后用BLAST分析发现,在146个分泌蛋白中,89个具有功能描述的分泌蛋白,主要是细胞生长代谢及生物降解酶类,其余57个皆为功能尚未明确的假定蛋白。本研究获得了多粘类芽孢杆菌SC2菌株分泌蛋白的信息,为进一步研究多粘类芽孢杆菌的蛋白功能奠定了基础。 相似文献
5.
《生命科学研究》2017,(6):501-506
糙皮侧耳(平菇)作为目前木质纤维素降解模式真菌,其产生的胞外分泌蛋白在植物纤维素、半纤维素及木质素降解过程中发挥着重要作用。为了给蛋白质组学鉴定糙皮侧耳胞外分泌蛋白实验提供参考,利用常见的生物信息学工具SignalP、ProtComp、TMHMM、big-PI Fungal Predictor和TargetP对糙皮侧耳全基因组中的12 186条蛋白质序列进行经典分泌蛋白预测,同时,对上述分泌蛋白的氨基酸分布、信号肽长度和切割位点以及其理化性质等进行分析。结果表明,糙皮侧耳全基因组中含有359个经典分泌蛋白,其氨基酸长度主要集中于101~600之间;信号肽长度集中在18~21之间;信号肽切割位点属于A-X-A类型,除此之外还含有5条具有RR-motif的信号肽。对这些分泌蛋白进行功能注释,结果表明225个蛋白质为未知功能蛋白质;114个为已知功能蛋白质,主要功能注释集中于木质纤维素降解酶类,包括纤维素酶、半纤维素酶、木质素降解相关酶等。以上结果表明通过上述生物信息学分析实现了对糙皮侧耳全基因组经典分泌蛋白的有效预测。 相似文献
6.
一株拮抗香蕉枯萎病的内生细菌的分离及其几丁质酶基因信号肽的分泌活性分析 总被引:1,自引:1,他引:1
目的:旨在分离并选择一株香蕉内生细菌作为内生基因工程生防菌,并克隆其几丁质酶基因的信号肽序列。方法:从香蕉植株杆下部分离并选择了一株拮抗香蕉枯萎病且具有分泌几丁质酶能力的内生细菌,对该菌株进行了形态观察、生理生化测定和16S rDNA序列分析,克隆了其几丁质酶基因的编码序列并预测了其信号肽,构建了含有信号肽和不含信号肽的几丁质酶的表达菌株BL-chi1和BL-chi2。结果:结合形态观察、生理生化特征和16S rDNA序列比对分析确定该菌株为Klebsiella属,将该菌株命名为KKWB 5;BL-chi1和BL-chi2经IPTG诱导后,均表达了与预期蛋白大小一致的蛋白,同时BL-chi1诱导后的培养基上清中出现一条约45kDa的条带,而BL-chi2和空载体的BL-pET22b诱导后的培养基上清中均无此条带;几丁质水解试验发现,BL-chi1诱导后的培养基上清中的蛋白经浓缩和纯化后都能在几丁质平板上形成透明水解圈。结论:该几丁质酶的信号肽能被BL21(DE3)所识别,将几丁质酶分泌到培养基中,并且分泌的几丁质酶具有水解几丁质的生物学活性。内生菌KKWB-5的分离及其几丁质酶分泌信号肽序列的克隆为进一步构建内生工程菌来防治香蕉枯萎病打下了基础。 相似文献
7.
摘要:【目的】验证大丽轮枝菌分泌途径中一个膜泡运输蛋白VdSec22的功能,为防治棉花黄萎病提供潜在的生物靶点。【方法】利用“正负双向筛选法”的方法,构建大丽轮枝菌VdSec22蛋白编码基因缺失的突变体菌株ΔQF。通过农杆菌介导的转化,将其编码基因VdSec22重新导入ΔQF构建了功能回补菌株CΔQF。以野生型菌株为对照,检测上述菌株分泌胞外蛋白(果胶酶、纤维素酶和毒素蛋白)的能力;采用蘸根接种的方法,检测上述菌株对棉花致病性的差异。同时通过定量PCR检测内质网分子伴侣表达量的方法,推断突变体菌株ΔQF中是否发生了内质网应激反应。【结果】成功构建了基因敲除突变体ΔQF和功能回补菌株CΔQF。突变体菌株ΔQF的果胶酶、纤维素酶、毒素蛋白的分泌能力和对棉花的致病性均较野生型减弱,并且产生了内质网应激反应。重新导入VdSec22基因可弥补突变体菌株ΔQF的上述缺陷。【结论】VdSec22是大丽轮枝菌的一个重要分泌途径蛋白,在大丽轮枝菌诸多胞外致病蛋白的分泌和棉花致病性中起重要作用。VdSec22可作为防治棉花黄萎病的潜在生物靶点。 相似文献
8.
【背景】从健康甘草须根中分离获得的一株芽孢杆菌具有高产β-葡萄糖苷酶的活性。【目的】探究分离菌株潜在的产酶遗传信息,为该菌深入研究与工业应用提供数据支撑。【方法】利用七叶苷培养基进行产β-葡萄糖苷酶的益生菌筛选,筛到一株产β-葡萄糖苷酶的芽孢杆菌,采用三代Nanopore PromethION和二代Illumina NovaSeq平台对菌株进行基因组测序与组装、并通过基因预测与功能注释等生物信息分析预测菌株潜在的β-葡萄糖苷酶基因。另外,以β-葡萄糖苷酶活性为指标,研究碳源、氮源、接种量、温度和起始pH对菌株产酶活性的影响。【结果】从甘草须根中分离得到一株具有β-葡萄糖苷酶活性的菌株,通过形态学观察、生理生化和分子生物学试验鉴定为芽孢杆菌属菌株,并命名为Bacillus rugosus A78.1。该菌株基因组大小为4 146 938 bp,G+C含量为43.86%,共编码4 255个基因。在基因组中,共注释到碳水化合物活性酶基因192个,其中β-葡萄糖苷酶基因10个,分别属于GH1和GH3家族基因。在基因本体(GO)、京都基因与基因组百科全书(Kyoto encyclopedia of genes and genomes,KEGG)和同源基因簇(clusters of orthologous groups of proteins,COG)数据库分别注释到2 896、4 019和3 657个基因。该菌株基因组测序结果上传至NCBI获得GenBank登录号为CP096590。菌株A78.1产β-葡萄糖苷酶的最佳碳、氮源分别为0.5%葡萄糖、1.0%酵母浸粉,最佳培养条件为温度37℃、3%接种量、pH 6.0,此条件下β-葡萄糖苷酶活力可达到(5.640±0.085) U/mL。【结论】通过全基因组测序分析及产酶优化试验确定了Bacillus rugosus A78.1优良的产β-葡萄糖苷酶能力及在碳水化合物代谢方面的潜力,为该菌株在纤维素分解、糖苷类化合物水解等生物、化工和食品领域的研究与应用提供基础。 相似文献
9.
摘要:【目的】探明醉马草内生菌的种类,筛选对农作物虫害有毒杀作用的菌株。【方法】采用研磨法从健康醉马草植物的根、茎、叶和种子中进行菌种分离;通过对其形态、培养特征、生理生化及其他生物学特性的研究;16S rDNA及ITS序列的系统发育学分析进行鉴定;用玻片浸渍法和喷雾法筛选产杀虫活性物质菌株。【结果】获得细菌89株,分别属于枯草芽孢杆菌属(Bacillus)、链霉菌属(Streptomyces)、棒状杆菌属(Corynebacterium)、叶杆菌属(Phyllobacterium)、鞘脂单胞菌属(Sph 相似文献
10.
目的:分离鉴定一株沙门菌的烈性噬菌体,观察其形态大小,完成全基因组测序,分析其基因组结构和进化关系,为治疗沙门菌感染提供新的策略和实验依据。方法:以沙门菌SAL95作为指示菌从医院废水中分离噬菌体,分离到的噬菌体经浓缩和纯化后采用透射电镜观察其形态大小,提取噬菌体的基因核酸并完成全基因组高通量测序,分析其全基因组的结构特征,通过比较基因组分析研究其进化关系。结果:从解放军307医院未经消毒处理的废水中分离到一株烈性沙门菌噬菌体。电镜观察显示,该噬菌体头部呈立体对称,有一不收缩的长尾。其基因组全长113 183 bp,比较基因组分析确定该噬菌体为一株新的沙门菌噬菌体,命名为IME-SAL1。结论:从医院废水中分离到一株烈性沙门菌噬菌体IME-SAL1,研究了该噬菌体的分类、基因组结构、进化关系,可为其实际应用提供参考。 相似文献
11.
A combined transmembrane topology and signal peptide prediction method 总被引:31,自引:0,他引:31
An inherent problem in transmembrane protein topology prediction and signal peptide prediction is the high similarity between the hydrophobic regions of a transmembrane helix and that of a signal peptide, leading to cross-reaction between the two types of predictions. To improve predictions further, it is therefore important to make a predictor that aims to discriminate between the two classes. In addition, topology information can be gained when successfully predicting a signal peptide leading a transmembrane protein since it dictates that the N terminus of the mature protein must be on the non-cytoplasmic side of the membrane. Here, we present Phobius, a combined transmembrane protein topology and signal peptide predictor. The predictor is based on a hidden Markov model (HMM) that models the different sequence regions of a signal peptide and the different regions of a transmembrane protein in a series of interconnected states. Training was done on a newly assembled and curated dataset. Compared to TMHMM and SignalP, errors coming from cross-prediction between transmembrane segments and signal peptides were reduced substantially by Phobius. False classifications of signal peptides were reduced from 26.1% to 3.9% and false classifications of transmembrane helices were reduced from 19.0% to 7.7%. Phobius was applied to the proteomes of Homo sapiens and Escherichia coli. Here we also noted a drastic reduction of false classifications compared to TMHMM/SignalP, suggesting that Phobius is well suited for whole-genome annotation of signal peptides and transmembrane regions. The method is available at as well as at 相似文献
12.
Production of hepatitis C virus (HCV) core protein requires the cleavages of polyprotein by signal peptidase and signal peptide
peptidase (SPP). Cleavage of signal peptide at the C-terminus of HCV core protein by SPP was characterized in this study.
The spko mutant (mutate a.a. 189–193 from ASAYQ to PPFPF) is more efficient than the A/F mutant (mutate a.a 189 and 191 from
A to F) in blocking the cleavage of signal peptide by signal peptidase. The cleavage efficiency of SPP is inversely proportional
to the length of C-terminal extension of the signal peptide: the longer the extension, the less efficiency the cleavage is.
Thus, reducing the length of C-terminal extension of signal peptide by signal peptidase cleavage could facilitate further
cleavage by SPP. The recombinant core protein fused with signal peptide from the C-terminus of p7 protein, but not those from
the C-termini of E1 and E2, could be cleaved by SPP. Therefore, the sequence of the signal peptide is important but not the
sole determinant for its cleavage by SPP. Replacement of the HCV core protein E.R.-associated domain (a.a. 120–150) with the
E.R.-associated domain (a.a.1–50) of SARS-CoV membrane protein results in the failure of cleavage of this recombinant protein
by SPP, though this protein still is E.R.-associated. This result suggests that not only E.R.-association but also specific
protein sequence is important for the HCV core protein signal peptide cleavage by SPP. Thus, our results suggest that both
sequences of the signal peptide and the E.R.-associated domain are important for the signal peptide cleavage of HCV core protein
by SPP.
Electronic Supplementary MaterialThe online version of this article (doi: ) contains supplementary material, which is available to authorized users. 相似文献
13.
Proteins destined for secretion or membrane compartments possess signal peptides for insertion into the membrane. The signal peptide is therefore critical for localization and function of cell surface receptors and ligands that mediate cell-cell communication. About 4% of all human proteins listed in UniProt database have signal peptide domains in their N terminals. A comprehensive literature survey was performed to retrieve functional and disease associated genetic variants in the signal peptide domains of human proteins. In 21 human proteins we have identified 26 disease associated mutations within their signal peptide domains, 14 mutations of which have been experimentally shown to impair the signal peptide function and thus influence protein transportation. We took advantage of SignalP 3.0 predictions to characterize the signal peptide prediction score differences between the mutant and the wild-type alleles of each mutation, as well as 189 previously uncharacterized single nucleotide polymorphisms (SNPs) found to be located in the signal peptide domains of 165 human proteins. Comparisons of signal peptide prediction outcomes of mutations and SNPs, have implicated SNPs potentially impacting the signal peptide function, and thus the cellular localization of the human proteins. The majority of the top candidate proteins represented membrane and secreted proteins that are associated with molecular transport, cell signaling and cell to cell interaction processes of the cell. This is the first study that systematically characterizes genetic variation occurring in the signal peptides of all human proteins. This study represents a useful strategy for prioritization of SNPs occurring within the signal peptide domains of human proteins. Functional evaluation of candidates identified herein may reveal effects on major cellular processes including immune cell function, cell recognition and adhesion, and signal transduction. 相似文献
14.
The TBF-1 is an 11.9-kDa fruiting body specific protein of the Ascomycetes hypogeous fungus Tuber borchii Vittad. found in aqueous extract and the hyphal cell wall. The tbf-1 gene codes a 12-amino acid N-terminal stretch not present in mature protein. This sequence does not match with any homologous signal sequences stored in data banks. To investigate the role of the N-terminus in TBF-1 localization, cDNA was expressed in Saccharomyces cerevisiae under the control of the 3-phosphoglycerate kinase promoter. Like Tuber, yeast also produces and secretes TBF-1 and the foreign protein binds with the cell wall. A signalless mutant protein was constructed; this DeltaTBF-1 was expressed but not exported by yeast. The secretion of TBF-1 was also suppressed using the sec18(ts) yeast mutant strain grown at nonpermissive temperature as host. Thus we demonstrated that the N-terminal 12-amino acid stretch is a noncanonical signal peptide that leads the TBF-1 toward the classical secretory pathway in yeast. 相似文献
15.
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BACKGROUND: Although hundreds of different signal peptides have now been identified, few studies have examined the factors enabling signal peptides to augment secretion of mature proteins. Signal peptides, located at the N-terminus of nascent secreted proteins, characteristically have three domains: (1) a basic domain at the N-terminus, (2) a central hydrophobic core, and (3) a carboxy-terminal cleavage region. In this study, we investigated whether alterations in the basic and/or the hydrophobic domains of a commonly used signal peptide from interleukin-2 (IL-2) affected secretion of two proteins: placental alkaline phosphatase (AP) and endostatin. METHODS: A series of modifications in the basic and/or hydrophobic domains of the IL-2 signal peptide were made by polymerase chain reaction with endostatin or AP plasmids as templates. Transfection of wild-type or modified IL-2 signal peptides fused in-frame with endostatin or AP were done with Superfect in vitro or by the hydrodynamic method in vivo. RESULTS: Increasing both the basicity and hydrophobicity of the signal peptide augmented the secretion of AP and endostatin by approximately 2.5- and 3.5-fold, respectively, from MDA-MB-435 cells in vitro. Over a range of DNA concentrations and times, the most effective IL-2 signal peptide increased AP levels in the medium compared to the wild-type IL-2 signal peptide. Comparable results from these modified IL-2 signal peptides were found to increase AP levels in the medium from bovine aortic endothelial cells. Moreover, the combined changes in basic and hydrophobic domains of the IL-2 signal peptide augmented serum levels of endostatin and placental AP by 3-fold when the optimal plasmid constructs were injected in vivo. CONCLUSIONS: Modification of the IL-2 signal peptide augments protein secretion both in vitro and in vivo. As a result, optimizing the signal peptide should be considered for increasing the therapeutic levels of secreted proteins. 相似文献
18.
Brach T Soyk S Müller C Hinz G Hell R Brandizzi F Meyer AJ 《The Plant journal : for cell and molecular biology》2009,57(3):534-541
We present a novel method to experimentally visualize in vivo the topology of transmembrane proteins residing in the endoplasmic reticulum (ER) membrane or passing through the secretory pathway on their way to their final destination. This approach, so-called redox-based topology analysis (ReTA), is based on fusion of transmembrane proteins with redox-sensitive GFP (roGFP) and ratiometric imaging. The ratio images provide direct information on the orientation of roGFP relative to the membrane as the roGFP fluorescence alters with changes in the glutathione redox potential across the ER membrane. As proof of concept, we produced binary read-outs using oxidized roGFP inside the ER lumen and reduced roGFP on the cytosolic side of the membrane for both N- and C-terminal fusions of single and multi-spanning membrane proteins. Further, successive deletion of hydrophobic domains from the C-terminus of the K/HDEL receptor ERD2 resulted in alternating localization of roGFP and a topology model for At ERD2 with six transmembrane domains. 相似文献
19.
Maffei A. Paonessa G. Abrescia P. Metafora S. Guardiola J. 《Biochemical genetics》1984,22(5-6):567-576
The proteins secreted by the rat seminal vesicle can be separated into five major fractions (namely, RSV-I through V) by gel electrophoresis in denaturing conditions. Two polymorphic proteins, svp-1 and svp-2, also present in the mouse, are produced by the seminal vesicle as well, but the procedure used for their identification makes it impossible to ascertain whether they correspond to any of the major fractions mentioned above. We show here that, on the basis of molecular weight measurements and of amino acid composition determinations, svp-1 and RSV-V are indeed the same protein. We also show that svp-2 is strictly related to another major secretory protein, RSV-IV, whose amino acid composition is almost identical, but for a few amino acid residues, to that of svp-2. We thus conclude that the latter protein is a variant of RSV-IV that can be expressed only in rats homozygous for a given allele at the svp-2 locus. This paper thus brings together published information on the genetics of the loci coding for svp-1 and for svp-2 and on the molecular biology of RSV-IV and RSV-V and of their corresponding gene.This work was supported by a CNR grant from Progetto Finalizzato Ingegneria Genetica e Basi Molecolari delle Malattie genetiche. 相似文献