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Laminin-deficient Muscular Dystrophy: Molecular Pathogenesis and Structural Repair Strategies

Overview
Journal Matrix Biol
Publisher Elsevier
Date 2017 Dec 2
PMID 29191403
Citations 55
Authors
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Abstract

Laminins are large heterotrimers composed of the α, β and γ subunits with distinct tissue-specific and developmentally regulated expression patterns. The laminin-α2 subunit, encoded by the LAMA2 gene, is expressed in skeletal muscle, Schwann cells of the peripheral nerve and astrocytes and pericytes of the capillaries in the brain. Mutations in LAMA2 cause the most common type of congenital muscular dystrophies, called LAMA2 MD or MDC1A. The disorder manifests mostly as a muscular dystrophy but slowing of nerve conduction contributes to the disease. There are severe, non-ambulatory or milder, ambulatory variants, the latter resulting from reduced laminin-α2 expression and/or deficient laminin-α2 function. Lm-211 (α2β1γ1) is responsible for initiating basement membrane assembly. This is primarily accomplished by anchorage of Lm-211 to dystroglycan and α7β1 integrin receptors, polymerization, and binding to nidogen and other structural components. In LAMA2 MD, Lm-411 replaces Lm-211; however, Lm-411 lacks the ability to polymerize and bind to receptors. This results in a weakened basement membrane leading to the disease. The possibility of introducing structural repair proteins that correct the underlying abnormality is an attractive therapeutic goal. Recent studies in mouse models for LAMA2 MD reveal that introduction of laminin-binding linker proteins that restore lost functional activities can substantially ameliorate the disease. This review discusses the underlying mechanism of this repair and compares this approach to other developing therapies employing pharmacological treatments.

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References
1.
Patton B, Miner J, Chiu A, Sanes J . Distribution and function of laminins in the neuromuscular system of developing, adult, and mutant mice. J Cell Biol. 1998; 139(6):1507-21. PMC: 2132624. DOI: 10.1083/jcb.139.6.1507. View

2.
Yurchenco P . Basement membranes: cell scaffoldings and signaling platforms. Cold Spring Harb Perspect Biol. 2011; 3(2). PMC: 3039528. DOI: 10.1101/cshperspect.a004911. View

3.
Girgenrath M, Beermann M, Vishnudas V, Homma S, Miller J . Pathology is alleviated by doxycycline in a laminin-alpha2-null model of congenital muscular dystrophy. Ann Neurol. 2008; 65(1):47-56. PMC: 2639627. DOI: 10.1002/ana.21523. View

4.
Rooney J, Knapp J, Hodges B, Wuebbles R, Burkin D . Laminin-111 protein therapy reduces muscle pathology and improves viability of a mouse model of merosin-deficient congenital muscular dystrophy. Am J Pathol. 2012; 180(4):1593-602. PMC: 3349899. DOI: 10.1016/j.ajpath.2011.12.019. View

5.
Denzer A, Brandenberger R, Gesemann M, Chiquet M, Ruegg M . Agrin binds to the nerve-muscle basal lamina via laminin. J Cell Biol. 1997; 137(3):671-83. PMC: 2139873. DOI: 10.1083/jcb.137.3.671. View