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首页> 外文期刊>Mechanisms of Development >Control of stem cell homeostasis via interlocking microRNA and microProtein feedback loops. (Special Issue: Developmental plasticity and adaptation in plants.)
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Control of stem cell homeostasis via interlocking microRNA and microProtein feedback loops. (Special Issue: Developmental plasticity and adaptation in plants.)

机译:通过互锁的microRNA和microProtein反馈环控制干细胞稳态。 (特刊:植物的发育可塑性和适应性。)

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摘要

Stem cells in the shoot apex of plants produce cells required for the formation of new leaves. Adult leaves are composed of multiple tissue layers arranged along the dorso-ventral (adaxial/abaxial) axis. Class III homeodomain leucine zipper (HD-ZIPIII) transcription factors play an important role in the set-up of leaf polarity in plants. Loss of HD-ZIPIII function results in strongly misshapen leaves and in severe cases fosters the consumption of the apical stem cells, thus causing a growth arrest in mutant plants. HD-ZIPIII mRNA is under tight control by microRNAs 165/166. In addition to the microRNA-action a second layer of regulation is established by LITTLE ZIPPER (ZPR)-type microProteins, which can interact with HD-ZIPIII proteins, forming attenuated protein complexes. Here we show that REVOLUTA (REV, a member of the HD-ZIPIII family) directly regulates the expression of ARGONAUTE10 (AGO10), ZPR1 and ZPR3. Because AGO10 was shown to dampen microRNA165/6 function, REV establishes a positive feedback loop on its own activity. Since ZPR-type microProteins are known to reduce HD-ZIPIII protein activity, REV concomitantly establishes a negative feedback loop. We propose that the interconnection of these microRNA/microProtein feedback loops regulates polarity set-up and stem cell activity in plants.
机译:植物茎尖中的干细胞产生形成新叶子所需的细胞。成年叶片由沿背腹(轴向/背面)轴排列的多个组织层组成。 III类同源域亮氨酸拉链(HD-ZIPIII)转录因子在植物叶片极性的建立中起重要作用。 HD-ZIPIII功能的丧失会导致叶片严重变形,在严重的情况下会促进根尖干细胞的消耗,从而导致突变植物的生长停滞。 HD-ZIPIII mRNA受microRNA 165/166严格控制。除了microRNA的作用外,LITTLE ZIPPER(ZPR)型microProteins还可以建立第二层调控,它可以与HD-ZIPIII蛋白相互作用,形成减毒的蛋白复合物。在这里,我们显示REVOLUTA(REV,HD-ZIPIII家族的成员)直接调节ARGONAUTE10(AGO10),ZPR1和ZPR3的表达。由于显示AGO10会抑制microRNA165 / 6的功能,因此REV会根据自身活动建立一个正反馈回路。由于已知ZPR型微蛋白会降低HD-ZIPIII蛋白的活性,因此REV会同时建立一个负反馈回路。我们建议这些microRNA / microProtein反馈回路的互连调节极性设置和植物中的干细胞活性。

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