Distinct contributions of ECM proteins to basement membrane mechanical properties in Drosophila

Author:

Töpfer Uwe12,Guerra Santillán Karla Yanín12345,Fischer-Friedrich Elisabeth345,Dahmann Christian125ORCID

Affiliation:

1. Institute of Genetics 1 , , 01062 Dresden , Germany

2. Technische Universität Dresden 1 , , 01062 Dresden , Germany

3. Biotechnology Center 2 , , 01307 Dresden , Germany

4. Technische Universität Dresden 2 , , 01307 Dresden , Germany

5. Cluster of Excellence Physics of Life, Technische Universität Dresden 3 , 01062 Dresden , Germany

Abstract

ABSTRACT The basement membrane is a specialized extracellular matrix (ECM) that is crucial for the development of epithelial tissues and organs. In Drosophila, the mechanical properties of the basement membrane play an important role in the proper elongation of the developing egg chamber; however, the molecular mechanisms contributing to basement membrane mechanical properties are not fully understood. Here, we systematically analyze the contributions of individual ECM components towards the molecular composition and mechanical properties of the basement membrane underlying the follicle epithelium of Drosophila egg chambers. We find that the Laminin and Collagen IV networks largely persist in the absence of the other components. Moreover, we show that Perlecan and Collagen IV, but not Laminin or Nidogen, contribute greatly towards egg chamber elongation. Similarly, Perlecan and Collagen, but not Laminin or Nidogen, contribute towards the resistance of egg chambers against osmotic stress. Finally, using atomic force microscopy we show that basement membrane stiffness mainly depends on Collagen IV. Our analysis reveals how single ECM components contribute to the mechanical properties of the basement membrane controlling tissue and organ shape.

Funder

Deutsche Forschungsgemeinschaft

Technische Universität Dresden

Publisher

The Company of Biologists

Subject

Developmental Biology,Molecular Biology

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