首页> 外文学位 >SpKrl: An effector of the vegetal organizer that limits the range of SpAN protease expression in the Strongylocentrotus purpuratus embryo.
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SpKrl: An effector of the vegetal organizer that limits the range of SpAN protease expression in the Strongylocentrotus purpuratus embryo.

机译:SpKrl:一种植物组织者的效应物,其限制了紫斑病菌紫癜胚胎中SpAN蛋白酶表达的范围。

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摘要

Localization of nuclear beta-catenin initiates specification of vegetal fates in sea urchin embryos. I have identified SpKrl, a gene that is activated simultaneously with nuclear entry of beta-catenin. SpKrl is upregulated when nuclear beta-catenin activity is increased with LiCl. This effect is independent of protein synthesis, strongly suggesting that SpKrl is a direct target of beta-catenin and TCF. Embryos in which SpKrl translation is inhibited with morpholino antisense oligonucleotides lack endoderm. Conversely, injection of SpKrl mRNA rescues some vegetal structures in beta-catenin-deficient embryos. I show that SpKrl is a negative regulator that can repress the expression of the animalizing transcription factor, SpSoxB1. I propose that SpKrl functions in patterning the vegetal domain by suppressing animal regulatory activities.; SpSoxB1 is an important positive regulator of SpAN transcription. SpAN is expressed transiently in sea urchin animal blastomeres and encodes a member of a family of secreted, tethered proteases. Using two different polyclonal antibodies raised against non-overlapping regions of SpAN, I demonstrate that SpAN is present in the apical extracellular matrix, from which it can be isolated in active form. SpAN accumulation in the apical extracellular matrix begins at 10 h postfertilization and persists through mesenchyme blastula stage. A major component of the extracellular matrix is hyalin which, like SpAN, contains EGF-like and complement C1r/C1s protein interaction domains. SpAN can cleave hyalin in vivo within the repeat region of the protein. Since hyalin has been shown by antibody interference experiments to be required for the morphogenetic movements of gastrulation, I tested the idea that SpAN function may also be required for this process. A loss-of-function assay was developed by injecting into sea urchin eggs an mRNA encoding a single chain synthetic anti-SpAN antibody fragment (scFv-SpAN). In embryos expressing scFv-SpAN, the hyaline layer became swollen and detached from the embryos. I propose that SpAN activity is required for cells to establish appropriate interactions with the extracellular matrix that support morphogenesis.
机译:核β-catenin的本地化启动了海胆胚胎中植物命运的规范。我已经鉴定出SpKrl,一个与β-catenin核进入同时激活的基因。当LiCl增强核β-连环蛋白的活性时,SpKr1上调。该作用与蛋白质合成无关,强烈暗示SpKr1是β-catenin和TCF的直接靶标。用吗啉代反义寡核苷酸抑制SpKr1翻译的胚胎缺乏内胚层。相反,注射SpKr1 mRNA可挽救β-catenin缺陷胚胎中的某些植物结构。我表明SpKrl是一种负调节剂,可以抑制动物转录因子SpSoxB1的表达。我建议SpKrl通过抑制动物调节活性而在植物结构图谱中起作用。 SpSoxB1是SpAN转录的重要正调控因子。 SpAN在海胆动物卵裂球中瞬时表达,并编码分泌型,束缚蛋白酶家族的成员。使用针对SpAN非重叠区域产生的两种不同的多克隆抗体,我证明了SpAN存在于顶端细胞外基质中,可以将其以活性形式从中分离出来。 SpAN在根尖细胞外基质中的积累始于受精后10 h,并持续至间充质囊期。透明质酸是细胞外基质的主要成分,它与SpAN一样,含有EGF样和补体C1r / C1s蛋白相互作用域。 SpAN可以在蛋白质的重复区域内体内切割透明质酸。由于透明质酸已通过抗体干扰实验显示为促胃动的形态发生运动所必需,因此我测试了SpAN功能可能也需要此过程的想法。通过向海胆卵中注射编码单链合成抗SpAN抗体片段(scFv-SpAN)的mRNA,开发了功能丧失测定法。在表达scFv-SpAN的胚胎中,透明膜层变得肿胀并与胚胎脱离。我建议SpAN活性是细胞与支持形态发生的细胞外基质建立适当相互作用所必需的。

著录项

  • 作者

    Howard, Eric Webster.;

  • 作者单位

    University of Rochester.;

  • 授予单位 University of Rochester.;
  • 学科 Biology Molecular.
  • 学位 Ph.D.
  • 年度 2000
  • 页码 143 p.
  • 总页数 143
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分子遗传学;
  • 关键词

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