Tuncdemir Sebnem N, Wamsley Brie, Stam Floor J, Osakada Fumitaka, Goulding Martyn, Callaway Edward M, Rudy Bernardo, Fishell Gord
NYU Neuroscience Institute and the Department of Neuroscience and Physiology, Smilow Research Center, New York University School of Medicine, 522 First Avenue, New York, NY 10016, USA.
Molecular Neurobiology Laboratory, The Salk Institute for Biological Studies, La Jolla, CA 92037, USA.
Neuron. 2016 Feb 3;89(3):521-35. doi: 10.1016/j.neuron.2015.11.020.
The precise connectivity of somatostatin and parvalbumin cortical interneurons is generated during development. An understanding of how these interneuron classes incorporate into cortical circuitry is incomplete but essential to elucidate the roles they play during maturation. Here, we report that somatostatin interneurons in infragranular layers receive dense but transient innervation from thalamocortical afferents during the first postnatal week. During this period, parvalbumin interneurons and pyramidal neurons within the same layers receive weaker thalamocortical inputs, yet are strongly innervated by somatostatin interneurons. Further, upon disruption of the early (but not late) somatostatin interneuron network, the synaptic maturation of thalamocortical inputs onto parvalbumin interneurons is perturbed. These results suggest that infragranular somatostatin interneurons exhibit a transient early synaptic connectivity that is essential for the establishment of thalamic feedforward inhibition mediated by parvalbumin interneurons.
生长抑素和小白蛋白皮质中间神经元的精确连接在发育过程中形成。目前对于这些中间神经元类别如何融入皮质回路的理解尚不完整,但对于阐明它们在成熟过程中所起的作用至关重要。在此,我们报告,在出生后的第一周,颗粒下层的生长抑素中间神经元接受来自丘脑皮质传入纤维的密集但短暂的支配。在此期间,同一层内的小白蛋白中间神经元和锥体神经元接受较弱的丘脑皮质输入,但受到生长抑素中间神经元的强烈支配。此外,早期(而非晚期)生长抑素中间神经元网络被破坏后,丘脑皮质输入到小白蛋白中间神经元的突触成熟受到干扰。这些结果表明,颗粒下层的生长抑素中间神经元表现出短暂的早期突触连接,这对于由小白蛋白中间神经元介导的丘脑前馈抑制的建立至关重要。