The Neurotrophin System in the Postnatal Brain—An Introduction

Biology Pub Date : 2024-07-24 DOI:10.3390/biology13080558
Oliver von Bohlen und Halbach, Monique Klausch
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Abstract

Neurotrophins can bind to and signal through specific receptors that belong to the class of the Trk family of tyrosine protein kinase receptors. In addition, they can bind and signal through a low-affinity receptor, termed p75NTR. Neurotrophins play a crucial role in the development, maintenance, and function of the nervous system in vertebrates, but they also have important functions in the mature nervous system. In particular, they are involved in synaptic and neuronal plasticity. Thus, it is not surprisingly that they are involved in learning, memory and cognition and that disturbance in the neurotrophin system can contribute to psychiatric diseases. The neurotrophin system is sensitive to aging and changes in the expression levels correlate with age-related changes in brain functions. Several polymorphisms in genes coding for the different neurotrophins or neurotrophin receptors have been reported. Based on the importance of the neurotrophins for the central nervous system, it is not surprisingly that several of these polymorphisms are associated with psychiatric diseases. In this review, we will shed light on the functions of neurotrophins in the postnatal brain, especially in processes that are involved in synaptic and neuronal plasticity.
出生后大脑中的神经营养素系统--简介
神经营养素可与属于酪氨酸蛋白激酶受体 Trk 家族的特定受体结合并通过其发出信号。此外,它们还能通过一种低亲和力受体(称为 p75NTR)结合并发出信号。神经营养素在脊椎动物神经系统的发育、维持和功能中起着至关重要的作用,但它们在成熟的神经系统中也有重要功能。特别是,它们参与突触和神经元的可塑性。因此,它们参与学习、记忆和认知,以及神经营养素系统紊乱可导致精神疾病也就不足为奇了。神经营养素系统对衰老很敏感,其表达水平的变化与大脑功能与年龄有关的变化相关。据报道,编码不同神经营养素或神经营养素受体的基因存在多种多态性。鉴于神经营养素对中枢神经系统的重要性,其中一些多态性与精神疾病相关也就不足为奇了。在本综述中,我们将阐明神经营养素在出生后大脑中的功能,尤其是在突触和神经元可塑性过程中的功能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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