Molecular Diabetology, University Hospital and Faculty of Medicine Carl Gustav Carus, TU Dresden, Dresden, Germany.
Paul Langerhans Institute Dresden (PLID) of Helmholtz Munich, University Hospital Carl Gustav Carus and Faculty of Medicine, TU Dresden, Dresden, Germany.
Nat Commun. 2024 Oct 24;15(1):9168. doi: 10.1038/s41467-024-53348-5.
Primary cilia are sensory organelles present in many cell types, partaking in various signaling processes. Primary cilia of pancreatic beta cells play pivotal roles in paracrine signaling and their dysfunction is linked to diabetes. Yet, the structural basis for their functions is unclear. We present three-dimensional reconstructions of beta cell primary cilia by electron and expansion microscopy. These cilia are spatially confined within deep ciliary pockets or narrow spaces between cells, lack motility components and display an unstructured axoneme organization. Furthermore, we observe a plethora of beta cell cilia-cilia and cilia-cell interactions with other islet and non-islet cells. Most remarkably, we have identified and characterized axo-ciliary synapses between beta cell cilia and the cholinergic islet innervation. These findings highlight the beta cell cilia's role in islet connectivity, pointing at their function in integrating islet intrinsic and extrinsic signals and contribute to understanding their significance in health and diabetes.
初级纤毛是许多细胞类型中存在的感觉器官,参与各种信号转导过程。胰腺β细胞的初级纤毛在旁分泌信号中起着关键作用,其功能障碍与糖尿病有关。然而,它们的功能的结构基础尚不清楚。我们通过电子和扩展显微镜呈现了β细胞初级纤毛的三维重建。这些纤毛在深纤毛囊中或细胞之间的狭窄空间中被空间限制,缺乏运动成分,并显示出无结构的轴丝组织。此外,我们观察到大量β细胞纤毛-纤毛和纤毛-细胞与其他胰岛和非胰岛细胞的相互作用。最值得注意的是,我们已经鉴定并描述了β细胞纤毛和胆碱能胰岛神经支配之间的轴-纤毛突触。这些发现强调了β细胞纤毛在胰岛连接中的作用,指出了它们在整合胰岛内在和外在信号中的功能,并有助于理解它们在健康和糖尿病中的重要性。