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首页> 外文期刊>Aging cell. >Age‐dependent changes in response property and morphology of a thermosensory neuron and thermotaxis behavior in Caenorhabditis elegans
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Age‐dependent changes in response property and morphology of a thermosensory neuron and thermotaxis behavior in Caenorhabditis elegans

机译:Caenorhabditis elegans中热轰动神经元和热传感器神经元和热诱变行为的年龄依赖性变化

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Age‐dependent cognitive and behavioral deterioration may arise from defects in different components of the nervous system, including those of neurons, synapses, glial cells, or a combination of them. We find that AFD, the primary thermosensory neuron of Caenorhabditis elegans , in aged animals is characterized by loss of sensory ending integrity, including reduced actin‐based microvilli abundance and aggregation of thermosensory guanylyl cyclases. At the functional level, AFD neurons in aged animals are hypersensitive to high temperatures and show sustained sensory‐evoked calcium dynamics, resulting in a prolonged operating range. At the behavioral level, senescent animals display cryophilic behaviors that remain plastic to acute temperature changes. Excessive cyclase activity of the AFD‐specific guanylyl cyclase, GCY‐8, is associated with developmental defects in AFD sensory ending and cryophilic behavior. Surprisingly, loss of the GCY‐8 cyclase domain reduces these age‐dependent morphological and behavioral changes, while a prolonged AFD operating range still exists in gcy‐8 animals. The lack of apparent correlation between age‐dependent changes in the morphology or stimuli‐evoked response properties of primary sensory neurons and those in related behaviors highlights the importance of quantitative analyses of aging features when interpreting age‐related changes at structural and functional levels. Our work identifies aging hallmarks in AFD receptive ending, temperature‐evoked AFD responses, and experience‐based thermotaxis behavior, which serve as a foundation to further elucidate the neural basis of cognitive aging.
机译:从神经系统的不同组分的缺陷中可能出现年龄依赖性认知和行为劣化,包括神经元,突触,胶质细胞或它们的组合。我们发现AFD,Caenorhabdise秀丽隐杆线虫的主要热敏囊神经元,以老年动物的表现为感官结束完整性的丧失,包括减少基于肌动蛋白的微血管性丰富和热敏性观音族的聚集。在功能水平,老年动物的AFD神经元对高温过敏并显示出持续的感觉诱发的钙动力学,导致长时间的操作范围。在行为水平,衰老动物显示冷冻干燥行为,以保持塑料急性温度变化。 AFD特异性瓜丹环酶GCY-8的过量环化酶活性与AFD感官结束和冷冻干燥行为中的发育缺陷有关。令人惊讶的是,GCY-8环酶结构域的丧失降低了这些年龄依赖性的形态和行为变化,而GCY-8动物仍然存在延长的AFD操作范围。年龄依赖性变化与初级感觉神经元的形态或刺激反应性能的表观相关性和相关行为中的那些缺乏表观相关性突出了在结构和功能级别的年龄相关变化时进行了老化特征的定量分析的重要性。我们的工作识别了AFD接受结束,温度诱发的AFD反应和基于体验的热潮行为的老化标志,作为进一步阐明认知老化的神经基础的基础。

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