Literature DB >> 29472414

Laminin-521 Protein Therapy for Glomerular Basement Membrane and Podocyte Abnormalities in a Model of Pierson Syndrome.

Meei-Hua Lin1, Joseph B Miller1, Yamato Kikkawa2, Hani Y Suleiman1, Karl Tryggvason3,4, Bradley L Hodges5, Jeffrey H Miner6.   

Abstract

Background Laminin α5β2γ1 (LM-521) is a major component of the GBM. Mutations in LAMB2 that prevent LM-521 synthesis and/or secretion cause Pierson syndrome, a rare congenital nephrotic syndrome with diffuse mesangial sclerosis and ocular and neurologic defects. Because the GBM is uniquely accessible to plasma, which permeates endothelial cell fenestrae, we hypothesized that intravenous delivery of LM-521 could replace the missing LM-521 in the GBM of Lamb2 mutant mice and restore glomerular permselectivity.Methods We injected human LM-521 (hLM-521), a macromolecule of approximately 800 kD, into the retro-orbital sinus of Lamb2-/- pups daily. Deposition of hLM-521 into the GBM was investigated by fluorescence microscopy. We assayed the effects of hLM-521 on glomerular permselectivity by urinalysis and the effects on podocytes by desmin immunostaining and ultrastructural analysis of podocyte architecture.Results Injected hLM-521 rapidly and stably accumulated in the GBM of all glomeruli. Super-resolution imaging showed that hLM-521 accumulated in the correct orientation in the GBM, primarily on the endothelial aspect. Treatment with hLM-521 greatly reduced the expression of the podocyte injury marker desmin and attenuated the foot process effacement observed in untreated pups. Moreover, treatment with hLM-521 delayed the onset of proteinuria but did not prevent nephrotic syndrome, perhaps due to its absence from the podocyte aspect of the GBM.Conclusions These studies show that GBM composition and function can be altered in vivovia vascular delivery of even very large proteins, which may advance therapeutic options for patients with abnormal GBM composition, whether genetic or acquired.
Copyright © 2018 by the American Society of Nephrology.

Entities:  

Keywords:  glomerular basement membrane; glomerular filtration barrier; laminin; podocyte

Mesh:

Substances:

Year:  2018        PMID: 29472414      PMCID: PMC5967757          DOI: 10.1681/ASN.2017060690

Source DB:  PubMed          Journal:  J Am Soc Nephrol        ISSN: 1046-6673            Impact factor:   10.121


  35 in total

1.  Overexpression of mini-agrin in skeletal muscle increases muscle integrity and regenerative capacity in laminin-alpha2-deficient mice.

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Journal:  FASEB J       Date:  2005-06       Impact factor: 5.191

2.  Laminin alpha 5 mediates ectopic adhesion of hepatocellular carcinoma through integrins and/or Lutheran/basal cell adhesion molecule.

Authors:  Yamato Kikkawa; Ryo Sudo; Junko Kon; Toru Mizuguchi; Motoyoshi Nomizu; Koichi Hirata; Toshihiro Mitaka
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3.  The alpha chain of laminin-1 is independently secreted and drives secretion of its beta- and gamma-chain partners.

Authors:  P D Yurchenco; Y Quan; H Colognato; T Mathus; D Harrison; Y Yamada; J J O'Rear
Journal:  Proc Natl Acad Sci U S A       Date:  1997-09-16       Impact factor: 11.205

4.  Chimeric protein repair of laminin polymerization ameliorates muscular dystrophy phenotype.

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5.  Forced expression of laminin beta1 in podocytes prevents nephrotic syndrome in mice lacking laminin beta2, a model for Pierson syndrome.

Authors:  Jung Hee Suh; George Jarad; Rene G VanDeVoorde; Jeffrey H Miner
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Authors:  Jeffrey H Miner; Gloriosa Go; Jeanette Cunningham; Bruce L Patton; George Jarad
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Review 7.  The glomerular basement membrane.

Authors:  Jeffrey H Miner
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9.  Laminin-111 protein therapy reduces muscle pathology and improves viability of a mouse model of merosin-deficient congenital muscular dystrophy.

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10.  Human laminin beta2 deficiency causes congenital nephrosis with mesangial sclerosis and distinct eye abnormalities.

Authors:  Martin Zenker; Thomas Aigner; Olaf Wendler; Tim Tralau; Horst Müntefering; Regina Fenski; Susanne Pitz; Valérie Schumacher; Brigitte Royer-Pokora; Elke Wühl; Pierre Cochat; Raymonde Bouvier; Cornelia Kraus; Karlheinz Mark; Henry Madlon; Jörg Dötsch; Wolfgang Rascher; Iwona Maruniak-Chudek; Thomas Lennert; Luitgard M Neumann; André Reis
Journal:  Hum Mol Genet       Date:  2004-09-14       Impact factor: 6.150

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  15 in total

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2.  Repairing the GBM Step by Step.

Authors:  Alda Tufro
Journal:  J Am Soc Nephrol       Date:  2018-04-12       Impact factor: 10.121

Review 3.  Alport syndrome and Pierson syndrome: Diseases of the glomerular basement membrane.

Authors:  Steven D Funk; Meei-Hua Lin; Jeffrey H Miner
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5.  Kidney podocyte-associated gene polymorphisms affect tacrolimus concentration in pediatric patients with refractory nephrotic syndrome.

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Review 6.  Advances in fluorescence microscopy techniques to study kidney function.

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7.  Collagen IVα345 dysfunction in glomerular basement membrane diseases. I. Discovery of a COL4A3 variant in familial Goodpasture's and Alport diseases.

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8.  Synaptopodin deficiency exacerbates kidney disease in a mouse model of Alport syndrome.

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Review 10.  Novel Microscopic Techniques for Podocyte Research.

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