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Achieving Singularity in Mammalian Odorant Receptor Gene Choice

机译:在哺乳动物气味受体基因选择中实现奇异性

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Odor discrimination requires differential expression of odor detectors. In fact, olfactory input to the brain is organized in units (glomeruli) innervated only by olfactory sensory neurons that express the same odorant receptor (OR). Therefore, discriminatory capacity is maximized if each sensory neuron expresses only one allele of a single OR gene, a postulate sometimes canonized as the "one neuron-one receptor rule." OR gene choice appears to result from a hierarchy of processes: differential availability of the alleles of each OR gene, zonal exclusion (or selection), OR gene switching during the initiation of OR gene transcription, and OR-dependent feedback to solidify the choice of one OR gene. The mechanisms underlying these processes are poorly understood, though a few elements are known or suspected. For example, the mechanism of activation of OR gene transcription appears to work in part through a few homeobox transcription factors (Emx2, and perhaps Lhx2) and the Ebf family of transcription factors. Further insights will probably come from several directions, but a promising hypothesis is that epigenetic mechanisms contribute to all levels of the hierarchical control of OR gene expression, especially the repressive events that seem to be necessary to achieve the singularity of OR gene choice.
机译:气味鉴别需要气味检测器的差异表达。事实上,嗅觉输入到大脑的组织是由表达相同气味受体(OR)的嗅觉感觉神经元支配的单位(肾小球)。因此,如果每个感觉神经元仅表达单个OR基因的一个等位基因,则判别能力将最大化,该假设有时被规范化为“一个神经元-一个受体规则”。 OR基因的选择似乎是由一系列过程导致的:每个OR基因的等位基因的可用性不同,区域排斥(或选择),OR基因转录启动过程中的OR基因切换以及依赖OR的反馈来巩固对OR基因的选择。一个或基因。尽管知道或怀疑了一些要素,但对这些过程的机制却知之甚少。例如,OR基因转录的激活机制似乎部分通过一些同源盒转录因子(Emx2,也许还有Lhx2)和Ebf家族的转录因子起作用。进一步的见解可能来自多个方向,但是一个有前途的假设是表观遗传机制有助于OR基因表达的各个层次控制,尤其是看来对于实现OR基因选择的奇异性必不可少的抑制事件。

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