细胞信号突起使脊髓神经发生中的动态远端接触成为可能。

IF 1.8 4区 生物学 Q3 BIOLOGY
Biology Open Pub Date : 2025-01-15 Epub Date: 2025-01-21 DOI:10.1242/bio.061765
Joshua Hawley, Robert Lea, Veronica Biga, Nancy Papalopulu, Cerys Manning
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引用次数: 0

摘要

在发育中的小鼠腹侧脊髓中,Notch信号下游的转录因子HES5沿背腹侧轴均匀分布表达为高HES5表达的神经祖细胞簇。虽然Notch信号需要直接接触膜才能激活,但我们之前已经从数学上证明,接触需要延伸到邻近细胞之外,才能出现HES5模式。然而,目前尚不清楚是否存在能够实现这种远距离信号传递的细胞结构。在这里,我们报告了细胞突起沿着单个神经祖细胞的尖基底轴存在。通过实时成像,我们发现这些突起动态地伸展和收缩,长度可达~ 20µm,足以将膜接触延伸到邻近细胞之外。Notch配体DLL1被发现与突起共定位,进一步支持Notch信号可以远距离转导的观点。通过使用CDC42抑制剂ML141降低突起密度,从而降低高HES5细胞簇之间的距离,来测试突起对HES5模式的影响。然而,这种趋势并不显著,留下了一个悬而未决的问题,即它们在神经发生的细粒度组织中的作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Cellular signalling protrusions enable dynamic distant contacts in spinal cord neurogenesis.

In the developing mouse ventral spinal cord, HES5, a transcription factor downstream of Notch signalling, is expressed as evenly spaced clusters of high HES5-expressing neural progenitor cells along the dorsoventral axis. While Notch signalling requires direct membrane contact for its activation, we have previously shown mathematically that contact needs to extend beyond neighbouring cells for the HES5 pattern to emerge. However, the presence of cellular structures that could enable such long-distance signalling was unclear. Here, we report that cellular protrusions are present all along the apicobasal axis of individual neural progenitor cells. Through live imaging, we show that these protrusions dynamically extend and retract reaching lengths of up to ∼20 µm, enough to extend membrane contact beyond adjacent cells. The Notch ligand DLL1 was found to colocalise with protrusions, further supporting the idea that Notch signalling can be transduced at a distance. The effect of protrusions on the HES5 pattern was tested by reducing the density of protrusions using the CDC42 inhibitor ML141, leading to a tendency to decrease the distance between high HES5 cell clusters. However, this tendency was not significant and leaves an open question about their role in the fine-grained organisation of neurogenesis.

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来源期刊
Biology Open
Biology Open BIOLOGY-
CiteScore
3.90
自引率
0.00%
发文量
162
审稿时长
8 weeks
期刊介绍: Biology Open (BiO) is an online Open Access journal that publishes peer-reviewed original research across all aspects of the biological sciences. BiO aims to provide rapid publication for scientifically sound observations and valid conclusions, without a requirement for perceived impact.
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