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Enhanced neuronal Met signalling levels in ALS mice delay disease onset

机译:ALS小鼠神经元Met信号传导水平的增强延迟了疾病的发作

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Signalling by receptor tyrosine kinases (RTKs) coordinates basic cellular processes during development and in adulthood. Whereas aberrant RTK signalling can lead to cancer, reactivation of RTKs is often found following stress or cell damage. This has led to the common belief that RTKs can counteract degenerative processes and so strategies to exploit them for therapy have been extensively explored. An understanding of how RTK stimuli act at cellular levels is needed, however, to evaluate their mechanism of therapeutic action. In this study, we genetically explored the biological and functional significance of enhanced signalling by the Met RTK in neurons, in the context of a neurodegenerative disease. Conditional met-transgenic mice, namely Rosa26LacZ?stop?Met, have been engineered to trigger increased Met signalling in a temporal and tissue-specific regulated manner. Enhancing Met levels in neurons does not affect either motor neuron (MN) development or maintenance. In contrast, increased neuronal Met in amyotrophic lateral sclerosis (ALS) mice prolongs life span, retards MN loss, and ameliorates motor performance, by selectively delaying disease onset. Thus, our studies highlight the properties of RTKs to counteract toxic signals in a disease characterized by dysfunction of multiple cell types by acting in MNs. Moreover, they emphasize the relevance of genetically assessing the effectiveness of agents targeting neurons during ALS evolution.. ? 2011 Macmillan Publishers Limited
机译:受体酪氨酸激酶(RTK)发出的信号可协调发育过程和成年期的基本细胞过程。尽管RTK信号异常可能导致癌症,但在压力或细胞损伤后通常会发现RTK的重新激活。这导致人们普遍认为RTK可以抵消退化过程,因此已经广泛探索了将其用于治疗的策略。但是,需要了解RTK刺激在细胞水平上的作用,以评估其治疗作用的机制。在这项研究中,我们在神经退行性疾病的背景下,通过遗传探索了Met RTK在神经元中增强信号传导的生物学和功能意义。条件转基因转基因小鼠,即Rosa26 LacZ?stop?Met ,已被工程化,可以通过时间和组织特异性调控的方式触发增加的Met信号传导。增强神经元中的Met水平不会影响运动神经元(MN)的发育或维持。相比之下,肌萎缩性侧索硬化症(ALS)小鼠神经元Met的增加通过选择性地延迟疾病发作而延长了寿命,延缓了MN的丧失并改善了运动能力。因此,我们的研究突显了RTKs通过在MNs中起作用来抵消以多种细胞功能障碍为特征的疾病中毒性信号的特性。此外,他们强调了在ALS进化过程中进行基因评估靶向神经元的药物有效性的相关性。 2011 Macmillan Publishers Limited

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