The thalamus is the central communication hub of the forebrain and provides the cerebral cortex with inputs from sensory organs, subcortical systems and the cortex itself. Multiple thalamic regions send convergent information to each cortical region, but the organizational logic of thalamic projections has remained elusive. Through comprehensive transcriptional analyses of retrogradely labeled thalamic neurons in adult mice, we identify three major profiles of thalamic pathways. These profiles exist along a continuum that is repeated across all major projection systems, such as those for vision, motor control and cognition. The largest component of gene expression variation in the mouse thalamus is topographically organized, with features conserved in humans. Transcriptional differences between these thalamic neuronal identities are tied to cellular features that are critical for function, such as axonal morphology and membrane properties. Molecular profiling therefore reveals covariation in the properties of thalamic pathways serving all major input modalities and output targets, thus establishing a molecular framework for understanding the thalamus.
A repeated molecular architecture across thalamic pathways.
丘脑通路中重复出现的分子结构
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作者:Phillips James W, Schulmann Anton, Hara Erina, Winnubst Johan, Liu Chenghao, Valakh Vera, Wang Lihua, Shields Brenda C, Korff Wyatt, Chandrashekar Jayaram, Lemire Andrew L, Mensh Brett, Dudman Joshua T, Nelson Sacha B, Hantman Adam W
| 期刊: | Nature Neuroscience | 影响因子: | 20.000 |
| 时间: | 2019 | 起止号: | 2019 Nov;22(11):1925-1935 |
| doi: | 10.1038/s41593-019-0483-3 | 研究方向: | 信号转导 |
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