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Purification of the Dendritic Filopodia-rich Fraction
Published on: May 2, 2019
The microfibril-associated glycoproteins (MAGPs) and the microfibrillar niche
Robert P Mecham1, Mark A Gibson2
1Department of Cell Biology and Physiology, Washington University School of Medicine, St. Louis, MO 63110, USA.
Abstract:
The microfibril-associated glycoproteins MAGP-1 and MAGP-2 are extracellular matrix proteins that interact with fibrillin to influence microfibril function. The two proteins are related through a 60 amino acid matrix-binding domain but their sequences differ outside of this region. A distinguishing feature of both proteins is their ability to interact with TGFβ family growth factors, Notch and Notch ligands, and multiple elastic fiber proteins. MAGP-2 can also interact with αvβ3 integrins via a RGD sequence that is not found in MAGP-1. Morpholino knockdown of MAGP-1 expression in zebrafish resulted in abnormal vessel wall architecture and altered vascular network formation. In the mouse, MAGP-1 deficiency had little effect on elastic fibers in blood vessels and lung but resulted in numerous unexpected phenotypes including bone abnormalities, hematopoietic changes, increased fat deposition, diabetes, impaired wound repair, and a bleeding diathesis. Inactivation of the gene for MAGP-2 in mice produced a neutropenia yet had minimal effects on bone or adipose homeostasis. Double knockouts had phenotypes characteristic of each individual knockout as well as several additional traits only seen when both genes are inactivated. A common mechanism underlying all of the traits associated with the knockout phenotypes is altered TGFβ signaling. This review summarizes our current understanding of the function of the MAGPs and discusses ideas related to their role in growth factor regulation.
Insights
Microfibril-associated glycoproteins (MAGPs) regulate extracellular matrix and growth factor signaling. MAGP-1 and MAGP-2 deficiencies cause distinct developmental and physiological abnormalities, highlighting their complex roles in TGFβ signaling.
Area of Science:
- Biochemistry
- Molecular Biology
- Developmental Biology
Background:
- Microfibril-associated glycoproteins (MAGPs), MAGP-1 and MAGP-2, are extracellular matrix proteins interacting with fibrillin.
- They share a matrix-binding domain but differ in other regions, influencing interactions with growth factors and elastic fibers.
Purpose of the Study:
- To review the functions of MAGP-1 and MAGP-2.
- To discuss their roles in regulating growth factor signaling and associated phenotypes.
Main Methods:
- Analysis of protein sequences and interaction domains.
- Review of knockout studies in zebrafish (MAGP-1) and mice (MAGP-1, MAGP-2, and double knockouts).
Main Results:
- MAGP-1 deficiency in zebrafish caused vascular abnormalities; in mice, it led to bone, hematopoietic, metabolic, and bleeding issues.
- MAGP-2 deficiency in mice resulted in neutropenia with minor effects on bone and adipose tissue.
- Double knockouts exhibited combined and novel phenotypes, with altered TGFβ signaling as a common mechanism.
Conclusions:
- MAGP-1 and MAGP-2 have distinct and overlapping functions in development and physiology.
- Their roles are significantly linked to the regulation of TGFβ signaling pathways.
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