FB2026_02 , released June 18, 2026
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Citation
Ordan, E., Volk, T. (2015). Cleaved Slit directs embryonic muscles.  Fly 9(2): 82--85.
FlyBase ID
FBrf0230670
Publication Type
Note
Abstract
The formation of functional musculoskeletal system relies on proper connectivity between muscles and their corresponding tendon cells. In Drosophila, larval muscles are born during early embryonic stages, and elongate toward tendons that are embedded within the ectoderm in later. The Slit/Robo signaling pathway had been implicated in the process of muscle elongation toward tendons. Here we discuss our recent findings regarding the critical contribution of Slit cleavage for immobilization and stabilization of the Slit signal on the tendon cells. Slit cleavage produces 2 polypeptides, the N-terminal Slit-N, which is extremely stable, undergoes oligomerization, and associates with the tendon cell surfaces, and the C-terminal Slit-C, which rapidly degrades. Slit cleavage leads to immobilization of Slit signaling on tendons, leading to a short-range repulsion, which eventually arrest further muscle elongation. Robo2, which is co-expressed with Slit by the tendon cells facilitates Slit cleavage. This activity does not require the cytoplasmic signaling domain of Robo2. We suggest that Robo2-dependent Slit cleavage, and the formation of Slit-N oligomers on the tendon cell surfaces direct muscle elongation, and provide a stop signal for the approaching muscle, through binding to Robo and Robo3 receptors expressed by the muscles.
PubMed ID
PubMed Central ID
PMC4826114 (PMC) (EuropePMC)
Related Publication(s)
Research paper

Slit cleavage is essential for producing an active, stable, non-diffusible short-range signal that guides muscle migration.
Ordan et al., 2015, Development 142(8): 1431--1436 [FBrf0228036]

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Secondary IDs
    Language of Publication
    English
    Additional Languages of Abstract
    Parent Publication
    Publication Type
    Journal
    Abbreviation
    Fly
    Title
    Fly
    Publication Year
    2007-
    ISBN/ISSN
    1933-6934 1933-6942
    Data From Reference