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Neuregulins and the neuromuscular system: 10 years of answers and questions.

机译:神经调节蛋白和神经肌肉系统:10年的答案和问题。

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The neuregulins were originally discovered in searches for the acetylcholine receptor-inducing activity (ARIA), glial growth factor (GGF), and a ligand for the oncogene neu (ErbB2/HER2). Neuregulin1 (NRG1)-mediated cell communication is critical in the central and peripheral nervous system, heart, breast, and other organ systems. This review will focus on the functions of NRG1s in the development and maintenance of the neuromuscular system and on the regulation of NRG1 signaling within this system. The roles of NRG1 signaling in the neuromuscular system are far more pervasive than contemplated when neuregulins were discovered 10 years ago. In fact, neuregulin-mediated cell communication plays an essential role in the biology of most components of the neuromuscular system--including motor and sensory neurons, muscle fibers, Schwann cells, and major specializations (neuromuscular synapses, muscle spindles, Golgi tendon organs, and peripheral nerves). It is argued here that while NRG1 proteins are indeed ARIA transcription and Schwann cell development is more complex than originally proposed. It is also argued that NRG1 isoforms differ in their signaling properties and that these differences tailor specific isoforms for specific signaling tasks; for example, some NRG1 isoforms may be specialized for paracrine signaling and others for juxtacrine signaling. In the first 10 years of neuregulin research there has been much progress in understanding the actions of neuregulins in shaping and maintaining the neuromuscular system. However, major questions, old and new, remain unanswered; and the second 10 years promises to be at least as exciting as the first.
机译:神经调节蛋白最初是在寻找乙酰胆碱受体诱导活性(ARIA),神经胶质生长因子(GGF)和癌基因neu的配体(ErbB2 / HER2)的过程中发现的。神经调节蛋白1(NRG1)介导的细胞通讯在中枢和外周神经系统,心脏,乳房和其他器官系统中至关重要。这项审查将侧重于神经肌肉系统的发展和维持中NRG1s的功能以及该系统中NRG1信号的调节。 NRG1信号在神经肌肉系统中的作用比10年前发现神经调节蛋白时所设想的要普遍得多。实际上,神经调节蛋白介导的细胞通讯在神经肌肉系统大多数组成部分的生物学中起着至关重要的作用,包括运动和感觉神经元,肌肉纤维,雪旺氏细胞和主要专长(神经肌肉突触,肌肉纺锤,高尔基腱器官,和周围神经)。这里争论的是,尽管NRG1蛋白确实是ARIA转录,并且雪旺细胞的发育比最初提出的要复杂。也有人认为NRG1亚型的信号传导特性有所不同,这些差异为特定的信号传导任务量身定制了特定的亚型。例如,某些NRG1亚型可能专门用于旁分泌信号传导,而另一些则专门用于邻分泌信号传导。在神经调节蛋白的前10年中,在了解神经调节蛋白在塑造和维持神经肌肉系统中的作用方面取得了很大进展。但是,新旧问题仍然没有答案;而第二个十年有望至少与第一个十年一样令人兴奋。

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