Differential adhesion regulates neurite placement via a retrograde zippering mechanism
Differential adhesion regulates neurite placement via a retrograde zippering mechanism
Date
2021-11-16
Authors
Sengupta, Titas
Koonce, Noelle L.
Vázquez-Martínez, Nabor
Moyle, Mark W.
Duncan, Leighton H.
Emerson, Sarah E.
Han, Xiaofei
Shao, Lin
Wu, Yicong
Santella, Anthony
Fan, Li
Bao, Zhirong
Mohler, William A.
Shroff, Hari
Colón-Ramos, Daniel
Koonce, Noelle L.
Vázquez-Martínez, Nabor
Moyle, Mark W.
Duncan, Leighton H.
Emerson, Sarah E.
Han, Xiaofei
Shao, Lin
Wu, Yicong
Santella, Anthony
Fan, Li
Bao, Zhirong
Mohler, William A.
Shroff, Hari
Colón-Ramos, Daniel
Linked Authors
Person
Person
Person
Person
Person
Alternative Title
Citable URI
As Published
Date Created
Location
DOI
10.7554/eLife.71171
Related Materials
Replaces
Replaced By
Keywords
Abstract
During development, neurites and synapses segregate into specific neighborhoods or layers within nerve bundles. The developmental programs guiding placement of neurites in specific layers, and hence their incorporation into specific circuits, are not well understood. We implement novel imaging methods and quantitative models to document the embryonic development of the C. elegans brain neuropil, and discover that differential adhesion mechanisms control precise placement of single neurites onto specific layers. Differential adhesion is orchestrated via developmentally regulated expression of the IgCAM SYG-1, and its partner ligand SYG-2. Changes in SYG-1 expression across neuropil layers result in changes in adhesive forces, which sort SYG-2-expressing neurons. Sorting to layers occurs, not via outgrowth from the neurite tip, but via an alternate mechanism of retrograde zippering, involving interactions between neurite shafts. Our study indicates that biophysical principles from differential adhesion govern neurite placement and synaptic specificity in vivo in developing neuropil bundles.
Description
© The Author(s), 2021. This article is distributed under the terms of the Creative Commons Attribution License. The definitive version was published in Sengupta, T., Koonce, N. L., Vazquez-Martinez, N., Moyle, M. W., Duncan, L. H., Emerson, S. E., Han, X., Shao, L., Wu, Y., Santella, A., Fan, L., Bao, Z., Mohler, W. A., Shroff, H., & Colon-Ramos, D. A. Differential adhesion regulates neurite placement via a retrograde zippering mechanism. Elife, 10, (2021): e71171, https://doi.org/10.7554/eLife.71171.
Embargo Date
Citation
Sengupta, T., Koonce, N. L., Vazquez-Martinez, N., Moyle, M. W., Duncan, L. H., Emerson, S. E., Han, X., Shao, L., Wu, Y., Santella, A., Fan, L., Bao, Z., Mohler, W. A., Shroff, H., & Colon-Ramos, D. A. (2021). Differential adhesion regulates neurite placement via a retrograde zippering mechanism. Elife, 10, e71171.