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叶绿体分裂相关蛋白CrMinD的保守功能

The Conservative Function of Chloroplast Division Associated CrMinD Protein
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摘要 细胞或质体中部正确分裂位点的选择是MinD蛋白与其他Min蛋白(MinC/E)相互作用的结果,MinD蛋白在原核细胞以及植物叶绿体的分裂过程中发挥着重要的作用。细胞中MinD蛋白浓度的明显升高可影响正常细胞的分裂过程而产生丝状体细胞。为了研究叶绿体分裂蛋白CrMinD的保守功能,构建了衣藻CrMinD-gfp的原核表达重组质粒进行了原核功能验证。试验结果表明,衣藻CrMinD蛋白的过量表达严重影响了大肠杆菌的分裂,其在原核细胞中运动和定位与用GFP标记的原核细胞MinD蛋白具有相似性。更进一步证明了叶绿体分裂同源物CrMinD蛋白与原核细胞MinD蛋白有着相似的功能,是一个进化上功能保守的蛋白。同时,这一结果也为研究植物细胞中质体的分裂机制奠定了一定的基础。 The interacting of MinD and MinC and MinE proteins of Escherichia coli are required for proper placement of the division septum at midcell, The MinD protein plays a key role in the course of bacterial cell and plant chloroplast division. The over production of MinD protein can block the normal cell division and lead to a filamentation cell. In plant cells, There are clear similarities between bacterial and plastid division, but limited information exists regarding the mechanism of plastid division in higher plants. Here we constructed a expression plasmid encoding the full-length CrMinD, an Chlamydomonas reinhardtii homologue of the bacterial MinD. In agreement with cell division studies in bacteria over expression of CrMinD in E. coli results in filamentation cell formation. The sesuggestion that CrMinD is an evolutionary conserved cell division protein. Meanwhile, the result lays a certain foundation for studying on the division mechanism of plant chloroplast.
出处 《云南植物研究》 CSCD 北大核心 2009年第5期415-420,共6页 Acta Botanica Yunnanica
基金 贵州省凯里学院植物学重点学科基金资助(2008ZW002)
关键词 叶绿体 MinD蛋白 基因表达 细胞分裂 Chloroplast MinD protein Gene expression Cell division
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参考文献27

  • 1Adams S,Maple J,Moller SG,2008.Functional conservation of the MIN plastid division homologues of Chlamydomonas reinhardtii [J].Plant,227(6):1199-1211.
  • 2Boasson R,Laetsch WH,Price I,1972.The etioplast chloroplast transformation in tobacco:Correlation of ultrastructure,replication and chlorophyll synthesis [J].American Journal of Botany,59:217-233.
  • 3Colletti KS,Tattersall EA,Pyke KA et al.,2000.A homologue of the bacterial cell division site-determining factor MinD mediates placement of the chloroplast division apparatus [J].Current Biology,10:507-516.
  • 4de Boer PA,Crossley RE,Rothfield LI,1989.A division inhibitor and atopological specificity factor coded for by the minicell locus determine proper placement of the division septum in E.coli [J].Cell,56(4):641-649.
  • 5de Boer PA,Crossley RE,Rothfield LI,1992.Roles of MinC and MinD in the site-specific septation block mediated by the MinCDE systemof Escherichia coli [J].Journal of Bacteriology,174(1):63-70.
  • 6Eric kson HP,1997.FtsZ a tubulin homologue in prokaryote cell division [J].Trends Cess Biology,7:362-367.
  • 7Fujiwara MT,Nakamura A,Itoh R et al.,2004.Chloroplast division site placement requires dimerization of the ARC11AtMinD1 protein in Arabidopsis [J].Journal of Cell Science,117:2399-2410.
  • 8Harper JDI,John PCL,1986.Coordination of division events in the Chlamydomonas cells cycle [J].Protoplasma,131:118-130.
  • 9Hu Y,Chen ZW,Liu WZ et al.,2008.Chloroplast division regulated by the circadian expression of FtsZ and Min genes in Chlamydomonas reinhardtii [J].European Journal of Phycology,43(2):207-215.
  • 10胡勇,孔冬冬,何奕昆.衣藻CrMinD基因的网上克隆及其进化分析[J].水生生物学报,2004,28(1):106-109. 被引量:3

二级参考文献10

  • 1Erickson H P. Fts Z, a tubulin homlogue in prokaryote cell division [J].Trends Cess Biol, 1997, 7:362-367
  • 2Rothfield L, Justice S, Gracia-lara J. Bacterial cell division [J].Annu Rer Genet, 1999,33:423-428
  • 3Pichoff S, Lutkenhaus J. Escherichia coli division inhibitor MinCD blocks septation by preventing Z-ring formation [J]. Journal of Bacteriology,2001,18(22):6630-6635
  • 4Osteryoung K W, Vierling E. Conserved cell and organelle division [J].Nature, 1995,376:473-474
  • 5Colletti K S, Tattersall E A, Pyke K A, et al. A homologue of the bacterial cell division site-determining factor MinD mediates placement of the chloroplast division apparatus [J]. Current Biology, 2000,10:507-516
  • 6Kanamaru K, Fujiware M, Kim M,et al. Chloroplast targeting, distribution and transcription fluctuation of AtMinD1, a Eubacteria-type factor critical for chloroplast division [J]. Plant Cell Physion, 2000,41(10):1119-1128
  • 7Chen H, Romo-Leroux P A, Salin M L. The iron-containing superoxide dismutase-encoding gene from Clamydomonas reinhaedtii obtained by direct and inverse PCR [J].Gene, 1996,168:113-116
  • 8Venkata S. Tavva,Glenn B. Collins,Randy D. Dinkins. Targeted overexpression of the Escherichia coli MinC protein in higher plants results in abnormal chloroplasts[J] 2006,Plant Cell Reports(4):341~348
  • 9Haruko Kuroiwa,Toshiyuki Mori,Manabu Takahara,Shin-ya Miyagishima,Tsuneyoshi Kuroiwa. Chloroplast division machinery as revealed by immunofluorescence and electron microscopy[J] 2002,Planta(2):185~190
  • 10Shin-ya Miyagishima,Haruko Kuroiwa,Tsuneyoshi Kuroiwa. The timing and manner of disassembly of the apparatuses for chloroplast and mitochondrial division in the red alga Cyanidioschyzon merolae[J] 2001,Planta(4):517~528

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