TY - JOUR
T1 - Experience-regulated molecular mechanisms in cortical GABAergic interneurons
T2 - from cellular functions to control over circuit plasticity
AU - Spiegel, Ivo
N1 - I thank the members of my laboratory for their reading and suggestions during the writing of this review. In addition, I thank Drs. Michela Fagiolini and Gord Fishell for their many edits and corrections. I have attempted to acknowledge as many as possible of the investigators whose work shaped my ideas but I am aware that I have inevitably missed crediting some of them, and I apologize for any inadvertent oversights. Similarly, I apologize for not having discussed in detail many of the studies that focused on non-experience-regulated molecular mechanisms in cortical INs - though excellent, this work was not the topic of the current review. Work in my laboratory is supported by the Israel Science Foundation (ISF grant 2354/19 ) and the US-Israel Binational Science Foundation (BSF grant 2017342 ). I am a scholar in the Zuckerman STEM leadership program and incumbent of the Friends and Linda and Richard Price Career Development Chair.
PY - 2021/4
Y1 - 2021/4
N2 - Experience-induced changes in GABAergic interneurons (INs) are thought to control the plasticity of neural circuits in the developing and adult cortex. However, it remains poorly understood how experience and the ensuing neuronal activity alter the properties and connectivity of specific IN subtypes and how these cellular changes, in turn, control the plasticity of cortical circuits. Here, I discuss recent experimental and theoretical studies that point to specific experience-induced changes in select IN subtypes as central regulators of plasticity in the cortex. In particular, I focus on the recent identification of several experience-regulated secreted molecules that modulate specific sets of synapses in IN subtypes. I argue that elucidating these molecular mechanisms will allow us to test experimentally the predictions made by theoretical models about the plasticity functions of specific IN subtypes.
AB - Experience-induced changes in GABAergic interneurons (INs) are thought to control the plasticity of neural circuits in the developing and adult cortex. However, it remains poorly understood how experience and the ensuing neuronal activity alter the properties and connectivity of specific IN subtypes and how these cellular changes, in turn, control the plasticity of cortical circuits. Here, I discuss recent experimental and theoretical studies that point to specific experience-induced changes in select IN subtypes as central regulators of plasticity in the cortex. In particular, I focus on the recent identification of several experience-regulated secreted molecules that modulate specific sets of synapses in IN subtypes. I argue that elucidating these molecular mechanisms will allow us to test experimentally the predictions made by theoretical models about the plasticity functions of specific IN subtypes.
UR - https://www.scopus.com/pages/publications/85097355954
U2 - 10.1016/j.conb.2020.11.013
DO - 10.1016/j.conb.2020.11.013
M3 - مقالة مرجعية
SN - 0959-4388
VL - 67
SP - 145
EP - 154
JO - Current Opinion in Neurobiology
JF - Current Opinion in Neurobiology
ER -