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首页> 外文期刊>Developmental biology >Expression and function of blimp1/krox, an alternatively transcribed regulatory gene of the sea urchin endomesoderm network
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Expression and function of blimp1/krox, an alternatively transcribed regulatory gene of the sea urchin endomesoderm network

机译:blimp1 / krox(海胆内膜中层网络的另一种转录调控基因)的表达和功能

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The blimp1/krox gene of Strongylocentrotus purpuratus, formerly krox1, encodes zinc finger transcription factors which play a central role in both early and late endomesoderm specification. Here we show that there are two alternative splice forms transcribed under the control of different regulatory regions. The blimp1/krox1b form was previously unknown, and is the form expressed during cleavage, beginning 6-9 h postfertilization. This form is required for the early events of endomesoderm specification. A different splice variant, blimp1/krox1a, is expressed only from gastrula stage onward. During cleavage stages the blimp1/krox gene is expressed in the large micromeres and veg2 descendents. Soon after, it is expressed in the ring of specified mesoderm cells at the vegetal pole of the blastula. Its expression is later restricted to the blastopore region and the posterior of the invaginating archenteron, and finally to the midgut and hindgut of the pluteus larva. The expression of blimpI/krox is dynamic, and involves several distinct spatial territories. A GFP recombinant BAC was created by substituting the GFP coding sequence for that of the second exon (1b), in order to distinguish the expression pattern of the early form from that of the late form. This construct closely mimics blimp1/krox1b expression during early stages of sea urchin development. To expand our knowledge of the downstream linkages of this gene, additional experiments were carried out using antisense morpholino oligos (MASO). We confirmed previously published data that blimp1/krox autoregulates its own expression, but discovered, surprisingly, that this gene represses rather than activates itself. This negative autoregulation is restricted to the mesodermal and probably skeletogenic territories during the blastula stage, as shown by in situ hybridization analysis of MASO injected embryos. The MASO perturbation analysis also revealed blimp1/krox inputs into other genes of the endomesoderm regulatory network. (c) 2006 Elsevier Inc. All rights reserved.
机译:紫轮叶紫轮虫的blimp1 / krox基因,以前称为krox1,编码锌指转录因子,在早期和晚期内胚层规格中都起着核心作用。在这里,我们显示了在不同调控区域的控制下转录的两种替代剪接形式。 blimp1 / krox1b形式以前是未知的,并且是在受精后6-9小时开始的卵裂过程中表达的形式。内膜中膜规格的早期事件需要这种形式。仅从下腹阶段开始表达不同的剪接变体blimp1 / krox1a。在切割阶段,blimp1 / krox基因在大的micromeres和veg2的后代中表达。此后不久,它在囊胚植物极的特定中胚层细胞环中表达。后来它的表达仅限于囊孔区域和侵袭性肠arch的后部,最后只限于斜尾幼虫的中肠和后肠。 blimpI / krox的表达是动态的,并且涉及几个不同的空间区域。通过用GFP编码序列替换第二个外显子(1b)的编码序列来创建GFP重组BAC,以区分早期形式和晚期形式的表达模式。该构建体紧密模拟海胆发育早期的blimp1 / krox1b表达。为了扩大我们对该基因下游连接的了解,使用反义吗啉代寡核苷酸(MASO)进行了其他实验。我们证实了以前发表的数据,blimp1 / krox会自动调节其自身的表达,但令人惊讶地发现,该基因抑制而不是激活自身。正如MASO注射胚胎的原位杂交分析所显示的,这种负的自我调节作用局限于囊胚期的中胚层和可能产生骨骼的领域。 MASO扰动分析还揭示了将blimp1 / krox输入到内胚层调节网络的其他基因中。 (c)2006 Elsevier Inc.保留所有权利。

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