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1.
全世界有约800种芋螺,每种芋螺产生多达2 000种的肽类毒素,这些毒素可以作用于电压门控离子通道(Na+,K+,Ca2+)、配体门控离子通道(n ACh Rs,5-HT3R,NMDAR)、G蛋白偶联受体(神经降压素和血管加压素)和神经递质转运蛋白。虽然已有大量的芋螺毒素通过毒液分离、c DNA克隆和转录组测序获得,但已发现的芋螺毒素不足其总量的0.5%。A-超家族中α-芋螺毒素基因结构包含了一个内含子和被该内含子分开的两个外显子,成熟肽具有标准的4个半胱氨酸骨架(CC-C-C)。本研究利用具有保守性的α-芋螺毒素基因内含子序列,采用多个PCR退火温度,从海南产疣缟芋螺中克隆到了1个新的具有6个半胱氨酸骨架(CC-C-C-CC)的M-超家族芋螺毒素基因和1个含有5个半胱氨酸新颖骨架(CC-C-C-C)的未知新家族芋螺毒素,并对它们的基因结构、成熟肽序列,以及与其他M-超家族芋螺毒素的遗传进化关系进行了深入分析。首次证实保守的α-芋螺毒素基因内含子序列可能存在于其他超家族中。  相似文献   

2.
目的 研究中国南海堂皇芋螺(Conus imperialis)毒素基因序列,为毒素功能研究奠定基础。方法 采用Trizol法提取堂皇芋螺毒腺管的总RNA,应用3’端快速扩增cDNA末端(3’RACE)及巢式PCR技术,获得A、O、J超家族芋螺毒素新序列;或以A家族高度保守的内含子及3’端非翻译区(3’UTR)设计引物,克隆出新的α-芋螺毒素新序列。选择合成毒素ImIIA及Im1.2,测定ImIIA二硫键的连接方式,并测定两种毒素对神经型烟碱乙酰胆碱受体(nAChR)的抑制活性。结果 获得11条毒素前体肽序列,分属A、O1、O2、J3等超家族,其中Im1.95为已报道芋螺毒素,其余为新发现芋螺毒素。ImIIA二硫键连接方式为少见的“C1-C2,C3-C4”,10μmol/L Im1.2、ImIIA对α2β2、α2β4、α4β2、α3β2、α3β4 5个nAChR亚型抑制活性较低。结论 通过基因克隆方法,从堂皇芋螺中获得了11个芋螺毒素,其中10个为新序列,属于A、O1、O2、J3等超家族毒素,Im1.2、ImIIA对神经型nAChR各受体亚型活性较低。  相似文献   

3.
织锦芋螺ο家族芋螺毒素的序列分析   总被引:5,自引:0,他引:5  
为了从织锦芋螺(Conustextile)中尽可能多地分离出ο家族的毒素序列和研究其应用价值,在克隆了织锦芋螺α芋螺毒素的基础上进行了织锦芋螺ο家族芋螺毒素基因的分离工作.从织锦芋螺毒管中提取m RNA,通过RACE(rapid am plification ofcDNA ends,cDNA 末端的快速扩增)-PCR方法扩增获得ο家族芋螺毒素cDNA 片段,并进行克隆和序列分析.从织锦芋螺毒液中获得了6种新的芋螺毒素序列,且毒素序列的成熟肽部分均符合C- C- CC- C- C的保守半胱氨酸框架.这些是新的ο家族芋螺毒素序列,新序列的阐明为进一步研究其生物活性和应用打下了基础.  相似文献   

4.
目的:从中国南海长距芋螺中克隆出新的芋螺毒素序列并用固相方法合成该毒素,测定其折叠后的二硫键配对方式并初步研究其药理学特性。方法:根据芋螺毒素A超家族保守的信号肽序列设计引物,通过3'-RACE扩增,从芋螺毒腺管中克隆出新的毒素基因;采用Fmoc-固相法合成线性多肽,通过空气氧化折叠获得含二硫键的折叠产物,用两步氧化折叠法测定多肽的二硫键连接方式;用双电极电压钳技术初步研究其药理学特性。结果:发现-种新的α-芋螺毒素Dil.1的cDNA序列,其成熟肽序列为CcVIESCHSNHIDECES;该肽二硫键连接方式以C1-C4、C2-C3为主,以C1-C3、C2-C4连接为辅,对烟碱型乙酰胆碱受体各亚型活性较弱。结论:Dil.1是-种新的α4/7型芋螺毒素,其折叠方式以C1-C4、C2-C3连接为主。  相似文献   

5.
新芋螺毒素S03的活性与折叠的关系   总被引:2,自引:0,他引:2  
利用O-超家族芋螺毒素具有保守信号肽编码序列的特性,采用RACE方法,对线纹芋螺O-超家族芋螺毒素的cDNA进行克隆、序列测定,并经化学合成,获得一种新型高活性芋螺多肽毒素SO3。该肽含25个氨基酸残基,其序列为CKAAGKPCSRIAYNCCTGSCRSGKC-NH2,有三对二硫键。对其进行了正确折叠及活性筛选。结果表明,该肽折叠主峰对小鼠脑内给药100ng,可明显观察到小鼠颤抖现象,对小鼠有明显的镇痛作用,而非正确折叠则无反应。  相似文献   

6.
芋螺毒素作为生物毒素中一个新的研究领域,其是一种很有价值的药物,目前常研究的有A-超家族芋螺毒素、O-超家族芋螺毒素、M-超家族芋螺毒素等,其中A-超家族芋螺毒素研究的时间最长,是目前掌握的较为完全的芋螺毒素家族之一,其具有强专一性、高丰度性、化学多样性等特点使得其成为药物学上的研究重点,其已经运用在临床治疗各个领域,为了进一步的研究A-超家族芋螺毒素在医学领域的作用,本文主要分析了A-超家族芋螺毒素的研究情况,以期为医学发展提供帮助。  相似文献   

7.
目的:优化PCR条件,建立能特异扩增出α-芋螺毒素基因片段的最理想PCR条件.方法:根据α-芋螺毒素基因保守的信号肽或内含子序列和非翻译区保守核苷酸序列设计了多组特异引物,并对引物浓度和退火温度等影响因素进行优化.结果:根据α-芋螺毒素基因保守的内含子序列为引物、引物浓度为0.1 μmol/L、退火温度为50℃时,能特异的扩增出α-芋螺毒素基因片段,分子量大约分别为180bp和300bp.结论:采用优化的PCR条件,能筛选出克隆新型的α--芋螺毒素基因片段的最理想引物,为α-芋螺毒素的化学合成、活性研究和应用提供基础.  相似文献   

8.
M-超家族芋螺毒素研究进展   总被引:1,自引:0,他引:1  
袁多多  王春光 《生命科学》2006,18(5):502-506
芋螺毒素是来源于芋螺毒液的活性多肽,具有分子质量小,作用靶点广泛且特异性高的优点,是一种丰富的生物资源。M-超家族芋螺毒素是芋螺毒素中较为复杂的超家族之一,包括μ-、ψ-和κM-家族,分别作用于电压门控钠通道、N型乙酰胆碱受体和电压门控钾通道。另外,mr3a和tx3c的发现预示M-超家族可能存在新的家族。本文对这些芋螺毒素的生理学和药理学特征、结构与功能的关系及应用研究进行综述。  相似文献   

9.
目的:从来自中国南海的4种芋螺中克隆出包含完整3’和5’非翻译区的蛋白质二硫键异构酶(PDI)全基因序列,并对其进行序列及进化分析。方法:根据各种生物PDI基因的保守区域设计引物,利用3’和5’cDNA末端快速扩增(RACE)方法克隆出PDI全基因序列,并通过生物信息学方法对各芋螺PDI序列进行分析。结果与结论:从中国南海玉女芋螺、黑星芋螺、堂皇芋螺、桶形芋螺cDNA中克隆出包含有完整3’和5’非翻译区的PDI全基因序列;分析结果表明各芋螺之间的同源性大于90%,而与对虾、人类、酿酒酵母的同源性均小于60%;各芋螺PDI与其他生物的2个活性位点序列高度保守,而底物结合位点具有物种特异性,进化树显示各芋螺PDI的特征可能受其捕食食性影响。  相似文献   

10.
Ⅰ-超家族芋螺毒素是芋螺毒素中较复杂的超家族之一,它可分为Ⅰ1和Ⅰ2两组.通常由33~46个氨基酸所组成.具有相同的4对半胱氨酸骨架,可特异性作用于各种离子通道及受体.现对该芋螺毒素的生物化学及分子生物学特征、生理学活性、结构与功能的关系及应用前景等方面的研究进行综述.  相似文献   

11.
Han YH  Wang Q  Jiang H  Liu L  Xiao C  Yuan DD  Shao XX  Dai QY  Cheng JS  Chi CW 《The FEBS journal》2006,273(21):4972-4982
The M-superfamily with the typical Cys framework (-CC-C-C-CC-) is one of the seven major superfamilies of conotoxins found in the venom of cone snails. Based on the number of residues in the last Cys loop (between C4 and C5), M-superfamily conotoxins can be provisionally categorized into four branches (M-1, M-2, M-3, M-4) [Corpuz GP, Jacobsen RB, Jimenez EC, Watkins M, Walker C, Colledge C, Garrett JE, McDougal O, Li W, Gray WR, et al. (2005) Biochemistry44, 8176-8186]. Here we report the purification of seven M-superfamily conotoxins from Conus marmoreus (five are novel and two are known as mr3a and mr3b) and one known M-1 toxin tx3a from Conus textile. In addition, six novel cDNA sequences of M-superfamily conotoxins have been identified from C. marmoreus, Conus leopardus and Conus quercinus. Most of the above novel conotoxins belong to M-1 and M-2 and only one to M-3. The disulfide analyses of two M-1 conotoxins, mr3e and tx3a, revealed that they possess a new disulfide bond arrangement (C1-C5, C2-C4, C3-C6) which is different from those of the M-4 branch (C1-C4, C2-C5, C3-C6) and M-2 branch (C1-C6, C2-C4, C3-C5). This newly characterized disulfide connectivity was confirmed by comparing the HPLC profiles of native mr3e and its two regioselectively folded isoforms. This is the first report of three different patterns of disulfide connectivity in conotoxins with the same cysteine framework.  相似文献   

12.
Conopeptides display prominent features of hypervariability and high selectivity of large gene families that mediate interactions between organisms. Remarkable sequence diversity of O-superfamily conotoxins was found in a worm-hunting cone snail Conus miles. Five novel cDNA sequences encoding O-superfamily precursor peptides were identified in C. miles native to Hainan by RT-PCR and 3'-RACE. They share the common cysteine pattern of the O-superfamily conotoxin (C-C-CC-C-C, with three disulfide bridges). The predicted peptides consist of 27-33 amino acids. We then performed a phylogenetic analysis of the new and published homologue sequences from C. miles and the other Conus species. Sequence divergence (%) and residue substitutions to view evolutionary relationships of the precursors' signal, propeptide, and mature toxin regions were analyzed. Percentage divergence of the amino acid sequences of the prepro region exhibited high conservation, whereas the sequences of the mature peptides ranged from almost identical with to highly divergent from inter- and intra-species. Despite the O-superfamily being a large and diverse group of peptides, widely distributed in the venom ducts of all major feeding types of Conus and discovered in several Conus species, it was for the first time that the newly found five O-superfamily peptides in this research came from the vermivorous C. miles. So far, conotoxins of the O-superfamily whose properties have been characterized are from piscivorous and molluscivorous Conus species, and their amino acid sequences and mode of action have been discussed in detail. The elucidated cDNAs of the five toxins are new and of importance and should attract the interest of researchers in the field, which would pave the way for a better understanding of the relationship of their structure and function.  相似文献   

13.
14.
A new class of Conus peptides, the I-superfamily of conotoxins, has been characterized using biochemical, electrophysiological and molecular genetic methods. Peptides in this superfamily have a novel pattern of eight Cys residues. Five peptides that elicited excitatory symptomatology, r11a, r11b, r11c, r11d and r11e, were purified from Conus radiatus venom; four were tested on amphibian peripheral axons and shown to elicit repetitive action potentials, consistent with being members of the 'lightning-strike cabal' of toxins that effect instant immobilization of fish prey. A parallel analysis of Conus cDNA clones revealed a new class of conotoxin genes that was particularly enriched (with 18 identified paralogues) in a Conus radiatus venom duct library; several C. radiatus clones encoded the excitatory peptides directly characterized from venom. The remarkable diversity of related I-superfamily peptides within a single Conus species is unprecedented. When combined with the excitatory effects observed on peripheral circuitry, this unexpected diversity suggests a corresponding molecular complexity of the targeted signaling components in peripheral axons; the I-conotoxin superfamily should provide a rich lode of pharmacological tools for dissecting and understanding these. Thus, the I-superfamily conotoxins promise to provide a significant new technology platform for dissecting the molecular components of axons.  相似文献   

15.
Conotoxins (CTX) from the venom of marine cone snails (genus Conus) represent large families of proteins, which show a similar precursor organization with surprisingly conserved signal sequence of the precursor peptides, but highly diverse pharmacological activities. By using the conserved sequences found within the genes that encode the alpha-conotoxin precursors, a technique based on RT-PCR was used to identify, respectively, two novel peptides (LiC22, LeD2) from the two worm-hunting Conus species Conus lividus, and Conus litteratus, and one novel peptide (TeA21) from the snail-hunting Conus species Conus textile, all native to Hainan in China. The three peptides share an alpha4/7 subfamily alpha-conotoxins common cysteine pattern (CCX(4)CX(7)C, two disulfide bonds), which are competitive antagonists of nicotinic acetylcholine receptor (nAChRs). The cDNA of LiC22N encodes a precursor of 40 residues, including a propeptide of 19 residues and a mature peptide of 21 residues. The cDNA of LeD2N encodes a precursor of 41 residues, including a propeptide of 21 residues and a mature peptide of 16 residues with three additional Gly residues. The cDNA of TeA21N encodes a precursor of 38 residues, including a propeptide of 20 residues and a mature peptide of 17 residues with an additional residue Gly. The additional residue Gly of LeD2N and TeA21N is a prerequisite for the amidation of the preceding C-terminal Cys. All three sequences are processed at the common signal site -X-Arg- immediately before the mature peptide sequences. The properties of the alpha4/7 conotoxins known so far were discussed in detail. Phylogenetic analysis of the new conotoxins in the present study and the published homologue of alpha4/7 conotoxins from the other Conus species were performed systematically. Patterns of sequence divergence for the three regions of signal, proregion, and mature peptides, both nucleotide acids and residue substitutions in DNA and peptide levels, as well as Cys codon usage were analyzed, which suggest how these separate branches originated. Percent identities of the DNA and amino acid sequences of the signal region exhibited high conservation, whereas the sequences of the mature peptides ranged from almost identical to highly divergent between inter- and intra-species. Notably, the diversity of the proregion was also high, with an intermediate percentage of divergence between that observed in the signal and in the toxin regions. The data presented are new and are of importance, and should attract the interest of researchers in this field. The elucidated cDNAs of these toxins will facilitate a better understanding of the relationship of their structure and function, as well as the process of their evolutionary relationships.  相似文献   

16.
从织锦芋螺中克隆α芋螺毒素序列   总被引:13,自引:0,他引:13  
为了从我国南海产织锦芋螺(Conustextile)中分离新的毒素序列并研究其应用价值,进行了织锦芋螺毒素基因的分离工作.从织锦芋螺毒管中提取mRNA,以A族芋螺毒素的信号肽编码部分和3′端非翻译部分的保守序列为引物,通过RT-PCR扩增和序列分析方法获得新的芋螺毒素序列.结果得到两种不同的α芋螺毒素序列,两者都属于α4/7亚型芋螺毒素,预测其成熟肽序列分别为Pro-Glu-Cys-Cys-Ser-Asp-Pro-Arg-Cys-Asn-Ser-Ser-His-Pro-Glu-Leu-Cys-Gly(C端Gly可能被酰胺化)和Pro-Glu-Cys-Cys-Ser-His-Pro-Ala-Cys-Asn-Val-Asp-His-Pro-Glu-Ile-Cys-Arg.采用传统的生化分离手段尚未从织锦芋螺中获得过α芋螺毒素序列,这两种α芋螺毒素作用的种属特异性、受体类型特异性和在小细胞肺癌的诊断和治疗中的应用价值有待进一步研究  相似文献   

17.
Using assay-directed fractionation of the venom from the vermivorous cone snail Conus planorbis, we isolated a new conotoxin, designated pl14a, with potent activity at both nicotinic acetylcholine receptors and a voltage-gated potassium channel subtype. pl14a contains 25 amino acid residues with an amidated C-terminus, an elongated N-terminal tail (six residues), and two disulfide bonds (1-3, 2-4 connectivity) in a novel framework distinct from other conotoxins. The peptide was chemically synthesized, and its three-dimensional structure was demonstrated to be well-defined, with an alpha-helix and two 3(10)-helices present. Analysis of a cDNA clone encoding the prepropeptide precursor of pl14a revealed a novel signal sequence, indicating that pl14a belongs to a new gene superfamily, the J-conotoxin superfamily. Five additional peptides in the J-superfamily were identified. Intracranial injection of pl14a in mice elicited excitatory symptoms that included shaking, rapid circling, barrel rolling, and seizures. Using the oocyte heterologous expression system, pl14a was shown to inhibit both a K+ channel subtype (Kv1.6, IC50 = 1.59 microM) and neuronal (IC50 = 8.7 microM for alpha3beta4) and neuromuscular (IC50 = 0.54 microM for alpha1beta1 epsilondelta) subtypes of the nicotinic acetylcholine receptor (nAChR). Similarities in sequence and structure are apparent between the middle loop of pl14a and the second loop of a number of alpha-conotoxins. This is the first conotoxin shown to affect the activity of both voltage-gated and ligand-gated ion channels.  相似文献   

18.
The A-superfamily of conotoxins: structural and functional divergence   总被引:7,自引:0,他引:7  
The generation of functional novelty in proteins encoded by a gene superfamily is seldom well documented. In this report, we define the A-conotoxin superfamily, which is widely expressed in venoms of the predatory cone snails (Conus), and show how gene products that diverge considerably in structure and function have arisen within the same superfamily. A cDNA clone encoding alpha-conotoxin GI, the first conotoxin characterized, provided initial data that identified the A-superfamily. Conotoxin precursors in the A-superfamily were identified from six Conus species: most (11/16) encoded alpha-conotoxins, but some (5/16) belong to a family of excitatory peptides, the kappaA-conotoxins that target voltage-gated ion channels. alpha-Conotoxins are two-disulfide-bridged nicotinic antagonists, 13-19 amino acids in length; kappaA-conotoxins are larger (31-36 amino acids) with three disulfide bridges. Purification and biochemical characterization of one peptide, kappaA-conotoxin MIVA is reported; five of the other predicted conotoxins were previously venom-purified. A comparative analysis of conotoxins purified from venom, and their precursors reveal novel post-translational processing, as well as mutational events leading to polymorphism. Patterns of sequence divergence and Cys codon usage define the major superfamily branches and suggest how these separate branches arose.  相似文献   

19.
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