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音猬因子在外侧运动柱的特异性表达有助于少突胶质细胞生成过程中pMN祖细胞群的维持和规模调控。

Lateral Motor Column specific expression of Sonic Hedgehog contributes to maintenance and scaling of pMN progenitor cell populations during oligodendrogenesis.

作者信息

Starikov Lev, Ghinia-Tegla Miruna, Kottmann Andreas H

机构信息

City University of New York School of Medicine (CSOM), Dept. of Molecular, Cellular and Biomedical Sciences, New York City, NY 10031, USA.

City University of New York Graduate Center, Molecular, Cellular, and Developmental Biology Subprogram, New York City, NY 10016, USA.

出版信息

Res Sq. 2024 May 13:rs.3.rs-4249282. doi: 10.21203/rs.3.rs-4249282/v1.

Abstract

Motor neurons (MNs) and oligodendrocyte precursor cells (OPCs) emerge sequentially from the pMN precursor domain during spinal cord development. MNs diversify into muscle specific subtypes and settle in stereotypic locations in the ventral horns. In contrast, OPCs are mobile and appear to evenly populate the parenchyma. Whether earlier born MNs influence OPC production is controversial. We found that Sonic Hedgehog signaling emanating from nascent MNs of the lateral motor column is critical for maintaining a larger and more yielding pMN domain at limb levels compared to trunk levels during OPC production. Reduced Shh signaling resulted in unrecoverable diminishment of pMN domain based OPC production leaving the spinal cord impoverished of OPC. Our results suggest that production of OPC at limb levels is contingent on completion of MN production.

摘要

在脊髓发育过程中,运动神经元(MNs)和少突胶质前体细胞(OPCs)依次从pMN前体结构域中产生。MNs分化为肌肉特异性亚型,并定位于腹角的固定位置。相比之下,OPCs具有移动性,似乎均匀地分布于实质组织中。早期产生的MNs是否会影响OPC的产生仍存在争议。我们发现,与躯干水平相比,在OPC产生过程中,来自外侧运动柱新生MNs的音猬因子信号对于在肢体水平维持更大且更具可塑性的pMN结构域至关重要。音猬因子信号减少导致基于pMN结构域的OPC产生不可恢复地减少,使脊髓中的OPC数量减少。我们的结果表明,肢体水平OPC的产生取决于MN产生的完成。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fc80/11118686/5b25e6c46034/nihpp-rs4249282v1-f0001.jpg

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