Brain Science Institute, Korea Institute of Science and Technology (KIST), Seoul, 02792, Republic of Korea.
Commun Biol. 2023 Apr 24;6(1):446. doi: 10.1038/s42003-023-04825-y.
The long-standing hypothesis that synapses between mossy fibers (MFs) and cerebellar granule cells (GCs) are organized according to the origins of MFs and locations of GC axons, parallel fibers (PFs), is supported by recent findings. However, the mechanisms of such organized synaptic connections remain unknown. Here, using our technique that enabled PF location-dependent labeling of GCs in mice, we confirmed that synaptic connections of GCs with specific MFs originating from the pontine nucleus (PN-MFs) and dorsal column nuclei (DCoN-MFs) were gently but differentially organized according to their PF locations. We then found that overall MF-GC synaptic connectivity was biased in a way that dendrites of GCs having nearby PFs tended to connect with the same MF terminals, implying that the MF origin- and PF location-dependent organization is associated with the overall biased MF-GC synaptic connectivity. Furthermore, the development of PN-MFs preceded that of DCoN-MFs, which matches the developmental sequence of GCs that preferentially connect with each type of these MFs. Thus, our results revealed that overall MF-GC synaptic connectivity is biased in terms of PF locations, and suggested that such connectivity is likely the result of synaptic formation between developmental timing-matched partners.
长期以来的假说认为,苔藓纤维 (MFs) 和小脑颗粒细胞 (GCs) 之间的突触根据 MFs 的起源和 GC 轴突、平行纤维 (PFs) 的位置进行组织,这一假说得到了最近的发现的支持。然而,这种有组织的突触连接的机制尚不清楚。在这里,我们使用我们的技术,使我们能够在小鼠中标记依赖 PF 位置的 GC,我们证实了来自脑桥核 (PN-MFs) 和背柱核 (DCoN-MFs) 的特定 MF 与 GC 的突触连接根据其 PF 位置进行了温和但有差异的组织。然后,我们发现,总的来说,MF-GC 突触连接具有偏向性,即具有附近 PF 的 GC 的树突倾向于与相同的 MF 末端连接,这意味着 MF 起源和 PF 位置依赖性组织与整体偏向性 MF-GC 突触连接有关。此外,PN-MFs 的发育先于 DCoN-MFs,这与优先与每种 MF 连接的 GC 的发育顺序相匹配。因此,我们的结果表明,总的来说,MF-GC 突触连接具有 PF 位置的偏向性,并表明这种连接可能是发育时机匹配的伙伴之间形成的突触的结果。