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MicroRNAs act sequentially and asymmetrically to control chemosensory laterality in the nematode

机译:MicroRNA顺序和不对称地起作用,以控制线虫中的化学感觉侧向

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Animal microRNAs ( miRNAs) are gene regulatory factors that prevent the expression of specific messenger RNA targets by binding to their 3' untranslated region(1-3). The Caenorhabditis elegans lsy-6 miRNA ( for lateral symmetry defective) is required for the left/right asymmetric expression of guanyl cyclase (gcy) genes in two chemosensory neurons termed ASE left (ASEL) and ASE right (ASER)(4,5). The asymmetric expression of these putative chemoreceptors in turn correlates with the functional lateralization of the ASE neurons(6). Here we find that a mutation in the die-1 zinc-finger transcription factor disrupts both the chemosensory laterality and left/right asymmetric expression of chemoreceptor genes in the ASE neurons. die-1 controls chemosensory laterality by activating the expression of lsy-6 specifically in ASEL, but not in ASER, where die-1 expression is downregulated through two sites in its 30 untranslated region. These two sites are complementary to mir-273, a previously uncharacterized miRNA, whose expression is strongly biased towards ASER. Forced bilateral expression of mir-273 in ASEL and ASER causes a loss of asymmetric die-1 expression and ASE laterality. Thus, an inverse distribution of two sequentially acting miRNAs in two bilaterally symmetric neurons controls laterality of the nematode chemosensory system.
机译:动物microRNA(miRNA)是基因调节因子,可通过与3'非翻译区结合来阻止特定信使RNA靶标的表达(1-3)。在两个称为ASE左(ASEL)和ASE右(ASER)的化学感觉神经元中,鸟苷酸环化酶(gcy)基因的左/右不对称表达需要秀丽隐杆线虫lsy-6 miRNA(用于侧向对称缺陷)(4,5) 。这些推定的化学感受器的不对称表达反过来与ASE神经元的功能侧化有关(6)。在这里,我们发现die-1锌指转录因子中的突变破坏了ASE神经元中化学感受器侧基和化学感受器基因的左/右不对称表达。 die-1通过激活lsy-6的表达特别在ASEL中而不是在ASER中激活lsy-6的表达来控制化学感觉的侧向性,而在其中Aer-1的表达通过其30个非翻译区域中的两个位点被下调。这两个位点与mir-273(先前未表征的miRNA)互补,后者的表达强烈偏向A​​SER。在ASEL和ASER中强迫表达mir-273会导致不对称die-1表达和ASE侧向性的丧失。因此,在两个双侧对称神经元中两个顺序起作用的miRNA的反向分布控制了线虫化学感觉系统的侧向性。

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