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1.
利用酿酒酵母转座子文库筛选MTM1基因缺失表型相关基因   总被引:1,自引:0,他引:1  
【目的】MTM1基因对于维持锰超氧化物歧化酶的活性和线粒体正常功能十分重要,MTM1基因的缺失会严重影响锰超氧化物歧化酶活性,并损伤线粒体功能,使酵母在非发酵培养基上不能生长。为加深对MTM1基因功能及其相关基因的研究,尝试利用转座子文库筛选MTM1基因缺失表型相关基因,寻找哪些位置的转座子插入能挽救MTM1基因缺失导致的生长缺陷。【方法】因MTM1基因的缺失造成的损伤不可逆,直接转入文库无法筛选得到MTM1基因缺失表型相关基因,本研究利用外源MTM1基因菌株和mTn-lacZ/LEU2酿酒酵母转座子文库进行筛选,寻找能挽救mtm1突变体生长缺陷的转座子插入位点。【结果】发现转座子插入HSL1和TPS2基因能挽救mtm1突变体的生长缺陷。【结论】我们的结果为深入了解MTM1基因的功能提供了线索。  相似文献   

2.
利用酿酒酵母转座子文库筛选线粒体镁代谢相关基因   总被引:1,自引:0,他引:1  
镁离子对于维持细胞正常功能十分重要,糖尿病、高血压、慢性呼吸道疾病、骨质疏松、心律失常等多种疾病都与镁代谢失衡有关.MRS2 基因编码线粒体镁离子转运蛋白,MRS2缺失会导致酵母线粒体镁离子浓度下降、线粒体内Ⅱ型内含子剪接缺陷和非发酵碳源培养基上的生长缺陷.为了增进对线粒体镁离子代谢调控基因的了解,利用酿酒酵母mTn-lacZ/LEU2转座子文库筛选MRS2的抑制基因,发现线粒体载体家族成员YMR166C基因的缺失可以挽救MRS2基因缺失突变体的生长缺陷、Ⅱ型内含子剪接缺陷,并可以调节线粒体镁离子浓度,首次发现YMR166C是线粒体镁代谢相关基因.  相似文献   

3.
酵母被广泛用于分子生物学中基因功能的检测。为扩大酵母株系UCC419在抑制基因活性检测方面的应用,本研究通过向UCC419株系中导入用特殊引物扩增出的包含标记基因TRP1的PCR片段,利用同源重组将UCC419中的筛选标记基因LEU2敲除,并同时插入TRP1,新建立的株系命名为UCC419m(m:modi-fied)。UCC419m为TRP1筛选、leu2突变型菌株,其它基因型均同UCC419。给UCC419m中转入携带LEU2的质粒pDEST32检测是否能恢复其表现型,同时转入不携带LEU2的质粒pDEST22作为阴性对照,将转化子在不含LEU2与URA3的培养基中培养,结果显示,携带LEU2质粒pDEST32的转化子能够在LEU2与URA3缺陷型培养基上正常生长,而不携带LEU2质粒pDEST22的转化子不能生长。本研究结果表明,成功建立了一种适用于基于Invitrogen载体的抑制基因活性检测或从文库中筛选抑制基因的酵母菌株。  相似文献   

4.
【目的】鉴定巴斯德毕赤酵母ORM1基因;研究ORM1基因缺失对毕赤酵母生长、内质网压力应答、细胞钙稳态调节和活性氧水平等方面的影响。【方法】利用生物信息学软件对毕赤酵母Orm1蛋白进行序列比对和分析;利用PCR介导的同源重组法构建orm1Δ缺失菌株,将回补质粒p IB1-ORM1转入orm1Δ菌株构建回补菌株;研究ORM1基因缺失对毕赤酵母生长的影响;以Fluo-3 AM染色法测定胞质钙含量;以DCFH-DA染色法分析胞内活性氧水平;以实时荧光定量PCR技术研究ORM1基因缺失对毕赤酵母非折叠蛋白应答、钙稳态和抗氧化系统基因表达的影响;使用试剂盒分析毕赤酵母抗氧化系统过氧化氢酶(CAT)和超氧化物歧化酶(SOD)活性及谷胱甘肽(GSH)的含量。【结果】在毕赤酵母基因组数据库中比对出酿酒酵母Orm1和Orm2的同源蛋白,并将该蛋白编码基因命名为ORM1;毕赤酵母ORM1基因缺失导致细胞生长受到明显抑制,对衣霉素引起的内质网压力敏感性增强,非折叠蛋白应答激活,细胞钙稳态紊乱,活性氧积累,抗氧化系统激活。【结论】由于非折叠蛋白应答、钙稳态调节、活性氧积累等均与内质网功能息息相关,因此,巴斯德毕赤酵母ORM1基因编码的Orm1蛋白在细胞生长及内质网正常功能的维持过程中发挥重要作用。  相似文献   

5.
旨在揭示芽殖酵母线粒体蛋白SHY1(YGR112W)在粟酒裂殖酵母中同源蛋白Shy1的功能。借助基因敲除方法获得shy1基因缺失菌株获Δshy1,并观察其在以甘油为唯一碳源的非发酵培养基上的生长表型;生物信息学分析显示粟酒裂殖酵母Shy1在N端含有大概30个氨基酸的线粒体定位序列(MTS),为进一步确定Shy1蛋白的定位,借助nmt1启动子调控下的Shy1蛋白C端GFP荧光标记,观察GFP绿色荧光位置。最后利用Western blotting检测shy1的缺失对线粒体蛋白的影响。研究结果表明,shy1基因缺失菌株在以甘油为唯一碳源的非发酵培养基上表现出生长缺陷,是线粒体呼吸缺陷型菌株;当GFP标记于nmt1启动子调控下的Shy1蛋白C端时,绿色荧光观察确定Shy1蛋白定位在线粒体;Western blotting检测结果显示shy1缺失导致线粒体相关蛋白的表达量明显下降;结果表明,粟酒裂殖酵母Shy1定位于线粒体且是线粒体呼吸链正常发挥功能所必须的。  相似文献   

6.
瑞氏木霉木糖醇脱氢酶基因的分离与鉴定   总被引:2,自引:0,他引:2  
将在木聚糖上生长的瑞氏木霉(Trichoderma reesei)RutC-30的cDNA文库全部质粒转化已携带有毕赤氏酵(Pithia stipitis)木糖还原酶基因的重组酿酒酵母(Saccharomycescerevisiae)菌株H475,在H475中构建了瑞氏木霉的cDNA表达亚文库。在以木糖为唯一碳源的选择性酵母合成培养基上,从该亚文库中筛选到瑞氏木霉木糖醇脱氢酶cDNA基因.该基因片段长为1.3kb。Southern、Norhern印迹杂交分析和蛋白质凝胶电泳结果表明该基因确实来源于瑞氏木霉,所编码蛋白质分子量约为40kDa。携带有毕赤氏酵母木糖还原酶和瑞氏木霉木糖醇脱氢酶基因的重组酵母能够在以木糖为唯一碳源的培养基上生长,并能将90%以上的木糖转化为木糖醇、乙醇和其它副产品。  相似文献   

7.
信号肽捕获系统的建立   总被引:7,自引:2,他引:5  
孙强  王冀姝  李荣  周鹏  黄红艳  韩骅 《遗传学报》2001,28(4):379-384
细胞分泌蛋白的分泌有赖于蛋白质N端的信号肽的存在,利用酵母建立了从cDNA文库中筛选编码信号肽的基因片段的遗传系统,为此,用一步基因破坏法对酿酒酵母EGY48基因组中的suc2基因(编码酵母蔗糖转换酶)进行了定位突变,获得了无蔗糖转换酶表达的酵母株EGY48-suc。将无信号肽的suc 2成熟肽基因克隆于酵母乙 氢酶(ADHI)基因启动子下游,得到用于文库筛选的酵母真核表达工体,启动子与成熟肽基因之间为多克隆位 ,用于插入待筛选的CDNA文库,用此载体转化酵母EGY48-suc,所得克隆可以在葡萄糖为碳源的培养基上生长,但不能在以棉子糖为碳源的培养基上生长,在suc 2成熟肽基因前分别插入suc 2信号肽基因片段或人IL-2受体α链信号肽基因片段,然后转染EGY48-suc,所得克隆既能在以葡萄糖为碳源的培养基上生长,也能在以棉子糖为碳源的培养基上生长,表明构建的系统可用于筛选插篱多克隆位点cDNA片段是否具有编码信号肽的功能。  相似文献   

8.
构建细菌双杂交系统中的诱饵载体p KT25-gp22和甲型副伤寒沙门氏菌基因文库以便后续的筛选实验。PCR扩增获得gp22基因,插入p KT25构成诱饵质粒p KT25-gp22。提取甲型副伤寒沙门氏菌基因组DNA,经Sau3AⅠ部分酶切后连接到p UT18C质粒的Bam HⅠ位点,获得基因组DNA表达文库。用化转的方法将诱饵质粒与p UT18C共转入BTH101,检测诱饵质粒自激活作用,并检测诱饵蛋白对宿主菌的毒性。将文库质粒电转至JM109感受态,PCR鉴定文库的多样性。诱饵载体p KT25-gp22无自激活报告基因的能力且对细菌的生长无毒性。所构建的副甲基因组文库覆盖基因组达8倍,满足文库筛选需要。成功构建细菌双杂交系统中诱饵载体p KT25-gp22,筛选文库质量良好,可应用于细菌双杂交实验。  相似文献   

9.
汉森酵母表达载体的构建和人血管生成抑制素基因的表达   总被引:1,自引:0,他引:1  
汉森酵母(H.polymorpha)是一类能以甲醇为唯一碳源和能源的甲基营养酵母,具有高表达外源基因、易于高密度发酵和产业化的特点。应用PCR技术扩增汉森酵母甲醇氧化酶(Methanol oxidase MOX)基因启动子和转录终止序列,并与汉森酵母Leu基因(Hpleu2)和人血管生成抑制素基因一起重组进大肠杆菌质粒pSP72,构建了整合型表达载体pSMA17,采用LiAc法将pSMA17转入汉森酵母A16(leu),筛选出阳性转化子H.polymorpha A16(pSMA17)。转化子在YPGE培养基中培养至对数生长后期,用甲醇进行诱导表达。ELISA和SDSPAGE分析结果证明人血管生成抑制素已获表达,表达产物分泌至培养基中。Western blot结果显示重组的人血管生成抑制素能与抗人纤溶酶原抗血清特异结合,具有免疫原性。  相似文献   

10.
NOR1基因是新的鼻咽癌相关基因,该基因在鼻咽癌细胞系HNE1和鼻咽癌组织中表达下调.在鼻咽癌细胞HNE1中恢复NOR1基因表达抑制了鼻咽癌细胞的生长和增殖能力.为了探讨NOR1基因的生物学功能,以NOR1基因为诱饵运用酵母双杂交技术在人胎脑文库中筛选其交互作用蛋白,挑选阳性克隆,进行DNA序列分析和同源检索,阳性克隆编码7个不同的蛋白质,其中一个阳性克隆编码线粒体ATP合成酶亚基OSCP蛋白.瞬时转染pCMV-myc-NOR1质粒进入鼻咽癌5-8F细胞,通过密度梯度离心法分离线粒体蛋白,Western blot检测表明myc-NOR1蛋白分布于线粒体与胞浆.免疫荧光检测表明在鼻咽正常上皮细胞NP69中内源性NOR1蛋白与线粒体存在明显共定位.随后采用特异性酵母双杂交、免疫荧光共定位、免疫共沉淀技术证实了NOR1与OSCP在线粒体内存在交互作用.提示,NOR1是一个新的线粒体蛋白,可能通过结合OSCP蛋白调控细胞能量代谢,为深入探讨其功能提供了重要线索.  相似文献   

11.
A yeast nuclear pet mutant of Saccharomyces cerevisiae lacking any detectable mitochondrial F1-ATPase activity was genetically complemented upon transformation with a pool of wild type genomic DNA fragments carried in the yeast Escherchia coli shuttle vector YEp 13. Plasmid-dependent complementation restored both growth of the pet mutant on a nonfermentable carbon source as well as functional mitochondrial ATPase activity. Characterization of the complementing plasmid by plasmid deletion analysis indicated that the complementing gene was contained on adjoining BamH1 fragments with a combined length of 3.05 kilobases. Gel analysis of the product of this DNA by in vitro translation in a rabbit reticulocyte lysate programmed with yeast mRNA hybrid selected by the plasmid revealed a product which could be immunoprecipitated by antisera against the beta subunit of the yeast mitochondrial ATPase complex. A comparison of the protein sequence derived from partial DNA sequence analysis indicated that the beta subunit of the yeast mitochondrial ATPase complex exhibits greater than 70% conservation of protein sequence when compared to the same subunit from the ATPase of E. coli, beef heart, and chloroplast. The gene coding the beta subunit (subunit 2) of yeast mitochondrial adenosine triphosphatase is designated ATP2. The utilization of cloned nuclear structural genes of mitochondrial proteins for the analysis of the post-translational targeting and import events in organelle assembly is discussed.  相似文献   

12.
In this study, we explore the hypothesis that some member of the mitochondrial carrier family has specific uncoupling activity that is responsible for the basal proton conductance of mitochondria. Twenty-seven of the 35 yeast mitochondrial carrier genes were independently disrupted in Saccharomyces cerevisiae. Six knockout strains did not grow on nonfermentable carbon sources such as lactate. Mitochondria were isolated from the remaining 21 strains, and their proton conductances were measured. None of the 21 carriers contributed significantly to the basal proton leak of yeast mitochondria. A possible exception was the succinate/fumarate carrier encoded by the Xc2 gene, but deletion of this gene also affected yeast growth and respiratory chain activity, suggesting a more general alteration in mitochondrial function. If a specific protein is responsible for the basal proton conductance of yeast mitochondria, its identity remains unknown.  相似文献   

13.
BackgroundAcquisition and distribution of zinc supports a number of biological processes. Various molecular factors are involved in zinc metabolism but not fully explored.Basic proceduresSpontaneous mutants were generated in yeast with excess zinc culture followed by whole genome DNA sequencing to discover zinc metabolism related genes by bioinformatics. An identified mutant was characterized through metallomic and molecular biology methods.Main findingsHere we reported that MTM1 knockout cells displayed much stronger zinc tolerance than wild type cells on SC medium when exposed to excess zinc. Zn accumulation of mtm1Δ cells was dramatically decreased compared to wild type cells under excessive zinc condition due to MTM1 deletion reduced zinc uptake. ZRC1 mRNA level of mtm1Δ cells was significantly higher than that in the wild-type strain leading to increased vacuolar zinc accumulations in mtm1Δ cells. The mRNA levels of ZRT1 and ZAP1 decreased in mtm1Δ cells contributing to less Zn uptake. The zrc1Δmtm1Δ double knockout strain exhibited Zn sensitivity. MTM1 knockout did not afford resistance to excess zinc through an effect mediated through an influence on levels of ROS. Superoxide dismutase 2 (Sod2p) activity in mtm1Δ cells was severely impaired and not restored through Zn supplementation. Meanwhile, additional Zn showed no significant effect on the localization and expression of Mtm1p.Principal conclusionsOur study reveals the MTM1 gene plays an important role in the regulation of zinc homeostasis in yeast cells via changing zinc uptake and distribution. This discovery provides new insights for better understanding biochemical communication between vacuole and mitochondrial in relation to zinc-metabolism.  相似文献   

14.
The permeability of the outer mitochondrial membrane to most metabolites is believed to be based in an outer membrane, channel-forming protein known as VDAC (voltage-dependent anion channel). Although multiple isoforms of VDAC have been identified in multicellular organisms, the yeast Saccharomyces cerevisiae has been thought to contain a single VDAC gene, designated POR1. However, cells missing the POR1 gene (delta por1) were able to grow on yeast media containing a nonfermentable carbon source (glycerol) but not on such media at elevated temperature (37 degrees C). If VDAC normally provides the pathway for metabolites to pass through the outer membrane, some other protein(s) must be able to partially substitute for that function. To identify proteins that could functionally substitute for POR1, we have screened a yeast genomic library for genes which, when overexpressed, can correct the growth defect of delta por1 yeast grown on glycerol at 37 degrees C. This screen identified a second yeast VDAC gene, POR2, encoding a protein (YVDAC2) with 49% amino acid sequence identity to the previously identified yeast VDAC protein (YVDAC1). YVDAC2 can functionally complement defects present in delta por1 strains only when it is overexpressed. Deletion of the POR2 gene alone had no detectable phenotype, while yeasts with deletions of both the POR1 and POR2 genes were viable and able to grow on glycerol at 30 degrees C, albeit more slowly than delta por1 single mutants. Like delta por1 single mutants, they could not grow on glycerol at 37 degrees C. Subcellular fractionation studies with antibodies which distinguish YVDAC1 and YVDAC2 indicate that YVDAC2 is normally present in the outer mitochondrial membrane. However, no YVDAC2 channels were detected electrophysiologically in reconstituted systems. Therefore, mitochondrial membranes made from wild-type cells, delta por1 cells, delta por1 delta por2 cells, and delta por1 cells overexpressing YVDAC2 were incorporated into liposomes and the permeability of resulting liposomes to nonelectrolytes of different sizes was determined. The results indicate that YVDAC2 does not confer any additional permeability to these liposomes, suggesting that it may not normally form a channel. In contrast, when the VDAC gene from Drosophila melanogaster was expressed in delta por1 yeast cells, VDAC-like channels could be detected in the mitochondria by both bilayer and liposome techniques, yet the cells failed to grow on glycerol at 37 degrees C. Thus, channel-forming activity does not seem to be either necessary or sufficient to restore growth on nonfermentable carbon sources, indicating that VDAC mediates cellular functions that do not depend on the ability to form channels.  相似文献   

15.
The processing enhancing protein of mitochondria (PEP) is an essential component that has been shown to participate in proteolytic removal of NH2-terminal signal peptides from precursor proteins imported into the mitochondrial matrix. Using a yeast strain bearing a PEP mutation that renders it temperature-sensitive, an approach of genetic suppression was taken in order to identify additional components that could be involved with protein import: high copy plasmids comprising a yeast genomic library were tested for ability to suppress the 37 degrees C growth defect. Two plasmids were isolated, pSMF1 and pSMF2, which suppressed the growth defect nearly as well as the cloned PEP gene itself. Sequence analysis of the rescuing genes predicted extremely hydrophobic proteins with sizes of 63 and 60 kDa, respectively. Remarkably, the predicted SMF1 and SMF2 products are 49% identical to each other overall. To test the requirement for SMF1 and SMF2, the chromosomal genes were disrupted. Individual disruption was without effect, but cells in which both genes were disrupted grew poorly. When mitochondria were prepared from the double disruption strain grown in a nonfermentable carbon source, they were morphologically normal but defective for translocation of radiolabeled precursor proteins. SMF1 protein was provisionally localized to the mitochondrial membranes using epitope tagging. We suggest that SMF1 and SMF2 are mitochondrial membrane proteins that influence PEP-dependent protein import, possibly at the step of protein translocation.  相似文献   

16.
A protocol has been devised to permit mutational analysis of the Rieske iron-sulfur protein of the mitochondrial cytochrome bc1 complex of Saccharomyces cerevisiae. The gene for this iron-sulfur protein (RIP1) has recently been cloned and sequenced (Beckmann, J. D., Ljungdahl, P. O., Lopez, J. L., and Trumpower, B. L. (1987) J. Biol. Chem. 262, 8901-8909). We have constructed a stable yeast deletion strain, JPJ1, in which the chromosomal copy of RIP1 was displaced by the yeast LEU2 gene by homologous recombination. A linear DNA fragment containing the LEU2 gene was inserted at the breakpoints of an 800-base pair deletion of the iron-sulfur protein gene and used to transform a leu- yeast strain. Leu+ transformants were obtained which were unable to grow on nonfermentable carbon sources. Southern analysis of the transformant, JPJ1, confirmed that the chromosomal copy of the RIP1 gene was deleted and replaced by the LEU2 gene. The genotype of JPJ1 was confirmed by genetic crosses. JPJ1 cannot grow on nonfermentable carbon sources but can be complemented to respiratory competence and transformed by yeast vectors containing the wild type RIP1 gene. The ability to complement strain JPJ1 with episomally encoded iron-sulfur protein provided the basis of a selection protocol by which mutagenized plasmids containing the RIP1 gene were assayed for mutations affecting respiratory growth. Five mutants of RIP1 were identified by their ability to complement JPJ1 to temperature-sensitive respiratory growth. DNA sequence analysis demonstrated that temperature-sensitive respiratory growth resulted from single point mutations within the protein coding region of RIP1. These mutations altered a single amino acid residue in each case. Mutations were dispersed throughout the terminal two-thirds of the protein. Each mutation was recessive and did not affect fermentative growth on dextrose. However, each mutation exerted unique temperature-sensitive growth characteristics on media containing the nonfermentable carbon source glycerol.  相似文献   

17.
18.
Summary A mitochondrial RNA splice defect in the first intron of the COB gene (bI1) can be suppressed by a dominant nuclear mutation SUP-101. Starting with a gene bank of yeast nuclear DNA from a SUP-101 suppressor strain cloned in the YEp13 plasmid, we have isolated a recombinant plasmid which exerts a suppressor activity similar to the SUP-101 allele. The N3(2) insert of this plasmid contains an open reading frame (ORF) of 1014 bp which is transcribed to a 12 S RNA. Deletion of the 5 end of this ORF and its upstream sequences abolishes the suppressor activity. The N3(2) insert thus carries a functional gene (called MRS3) which can suppress a mitochondrial splice defect. The chromosomal equivalent of the cloned gene has been mapped to chromosome 10. Disruption of this chromosomal gene has no phenotypic effect on wild-type cells.  相似文献   

19.
Mas37p, a novel receptor subunit for protein import into mitochondria   总被引:21,自引:5,他引:16       下载免费PDF全文
By screening a collection of Saccharomyces cerevisiae mutants temperature sensitive for growth on a nonfermentable carbon source, we have isolated a gene (termed MAS37) which encodes a novel receptor for protein import into mitochondria. Mas37p is a 37-kD outer membrane protein with two putative membrane-spanning regions. Inactivation of the MAS37 gene renders cells temperature-sensitive for respiration- driven growth, inhibits import of precursors into isolated mitochondria, and is synthetically lethal with a deletion of one of the genes encoding the import receptors Mas70p or Mas20p. Inactivation of Mas37p with specific antibodies inhibits import of different precursors to different extents; the precursor specificity of Mas37p resembles that of the previously described import receptor Mas70p. Mas70p and Mas37p form a 1:1 complex in detergent extracts of mitochondria and overexpression of one protein enhances that of the other. We suggest that the Mas37p/Mas70p heterodimer functions as a receptor for protein import into yeast mitochondria and that the mitochondrial receptor system consists of hetero-oligomeric subcomplexes with distinct binding activities, but overlapping precursor specificities.  相似文献   

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