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New insights into the regulation of synaptic plasticity from an unexpected place: Hippocampal area CA2

机译:来自突如其来的地方对突触可塑性调节的新见解:海马区CA2

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摘要

The search for molecules that restrict synaptic plasticity in the brain has focused primarily on sensory systems during early postnatal development, as critical periods for inducing plasticity in sensory regions are easily defined. The recent discovery that Schaffer collateral inputs to hippocampal area CA2 do not readily support canonical activity-dependent long-term potentiation (LTP) serves as a reminder that the capacity for synaptic modification is also regulated anatomically across different brain regions. Hippocampal CA2 shares features with other similarly “LTP-resistant” brain areas in that many of the genes linked to synaptic function and the associated proteins known to restrict synaptic plasticity are expressed there. Add to this a rich complement of receptors and signaling molecules permissive for induction of atypical forms of synaptic potentiation, and area CA2 becomes an ideal model system for studying specific modulators of brain plasticity. Additionally, recent evidence suggests that hippocampal CA2 is instrumental for certain forms of learning, memory, and social behavior, but the links between CA2-enriched molecules and putative CA2-dependent behaviors are only just beginning to be made. In this review, we offer a detailed look at what is currently known about the synaptic plasticity in this important, yet largely overlooked component of the hippocampus and consider how the study of CA2 may provide clues to understanding the molecular signals critical to the modulation of synaptic function in different brain regions and across different stages of development.
机译:限制大脑中突触可塑性的分子的研究主要集中在出生后早期的感觉系统上,因为很容易确定在感觉区域诱导可塑性的关键时期。向海马区CA2的Schaffer侧支输入不容易支持规范的活动依赖的长期增强(LTP)的最新发现提醒我们,突触修饰的能力在解剖学上也受到不同大脑区域的调节。海马CA2与其他类似的“ LTP抵抗”脑区具有相同的特征,因为在那里表达了许多与突触功能相关的基因以及已知的限制突触可塑性的相关蛋白。加上丰富的受体和信号分子的补充,可以诱导非典型形式的突触增强,CA2区成为研究大脑可塑性的特定调节剂的理想模型系统。此外,最近的证据表明,海马CA2有助于某些形式的学习,记忆和社交行为,但富含CA2的分子与假定的CA2依赖行为之间的联系才刚刚建立。在这篇综述中,我们将详细研究海马这个重要但又被广泛忽视的部分中有关突触可塑性的最新知识,并考虑对CA2的研究如何提供线索,以了解对突触调节至关重要的分子信号。在不同的大脑区域和不同的发育阶段起作用。

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