Nanoscale patterning of collagens in C. elegans apical extracellular matrix

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作者
Jennifer R. G. Adams
Murugesan Pooranachithra
Erin M. Jyo
Sherry Li Zheng
Alexandr Goncharov
Jennifer R. Crew
James M. Kramer
Yishi Jin
Andreas M. Ernst
Andrew D. Chisholm
机构
[1] University of California San Diego,Department of Cell and Developmental Biology, School of Biological Sciences
[2] University of California San Diego,Department of Neurobiology, School of Biological Sciences
[3] Northwestern University School of Medicine,undefined
[4] Department of Cell and Molecular Biology,undefined
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Nature Communications | / 14卷
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摘要
Apical extracellular matrices (aECMs) are complex extracellular compartments that form important interfaces between animals and their environment. In the adult C. elegans cuticle, layers are connected by regularly spaced columnar structures known as struts. Defects in struts result in swelling of the fluid-filled medial cuticle layer (‘blistering’, Bli). Here we show that three cuticle collagens BLI-1, BLI-2, and BLI-6, play key roles in struts. BLI-1 and BLI-2 are essential for strut formation whereas activating mutations in BLI-6 disrupt strut formation. BLI-1, BLI-2, and BLI-6 precisely colocalize to arrays of puncta in the adult cuticle, corresponding to struts, initially deposited in diffuse stripes adjacent to cuticle furrows. They eventually exhibit tube-like morphology, with the basal ends of BLI-containing struts contact regularly spaced holes in the cuticle. Genetic interaction studies indicate that BLI strut patterning involves interactions with other cuticle components. Our results reveal strut formation as a tractable example of precise aECM patterning at the nanoscale.
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