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biAb Mediated Restoration of the Linkage between Dystroglycan and Laminin-211 as a Therapeutic Approach for α-Dystroglycanopathies

Patients with α-dystroglycanopathies, a subgroup of rare congenital muscular dystrophies, present with a spectrum of clinical manifestations that includes muscular dystrophy as well as CNS and ocular abnormalities. Although patients with α-dystroglycanopathies are genetically heterogeneous, they sha...

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Autores principales: Gumlaw, Nathan, Sevigny, Leila M., Zhao, Hongmei, Luo, Zhengyu, Bangari, Dinesh S., Masterjohn, Elizabeth, Chen, Yangde, McDonald, Barbara, Magnay, Maureen, Travaline, Tara, Yoshida-Moriguchi, Takako, Fan, Wei, Reczek, David, Stefano, James E., Qiu, Huawei, Beil, Christian, Lange, Christian, Rao, Ercole, Lukason, Michael, Barry, Elizabeth, Brondyk, William H., Zhu, Yunxiang, Cheng, Seng H.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society of Gene & Cell Therapy 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7001080/
https://www.ncbi.nlm.nih.gov/pubmed/31843448
http://dx.doi.org/10.1016/j.ymthe.2019.11.023
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author Gumlaw, Nathan
Sevigny, Leila M.
Zhao, Hongmei
Luo, Zhengyu
Bangari, Dinesh S.
Masterjohn, Elizabeth
Chen, Yangde
McDonald, Barbara
Magnay, Maureen
Travaline, Tara
Yoshida-Moriguchi, Takako
Fan, Wei
Reczek, David
Stefano, James E.
Qiu, Huawei
Beil, Christian
Lange, Christian
Rao, Ercole
Lukason, Michael
Barry, Elizabeth
Brondyk, William H.
Zhu, Yunxiang
Cheng, Seng H.
author_facet Gumlaw, Nathan
Sevigny, Leila M.
Zhao, Hongmei
Luo, Zhengyu
Bangari, Dinesh S.
Masterjohn, Elizabeth
Chen, Yangde
McDonald, Barbara
Magnay, Maureen
Travaline, Tara
Yoshida-Moriguchi, Takako
Fan, Wei
Reczek, David
Stefano, James E.
Qiu, Huawei
Beil, Christian
Lange, Christian
Rao, Ercole
Lukason, Michael
Barry, Elizabeth
Brondyk, William H.
Zhu, Yunxiang
Cheng, Seng H.
author_sort Gumlaw, Nathan
collection PubMed
description Patients with α-dystroglycanopathies, a subgroup of rare congenital muscular dystrophies, present with a spectrum of clinical manifestations that includes muscular dystrophy as well as CNS and ocular abnormalities. Although patients with α-dystroglycanopathies are genetically heterogeneous, they share a common defect of aberrant post-translational glycosylation modification of the dystroglycan alpha-subunit, which renders it defective in binding to several extracellular ligands such as laminin-211 in skeletal muscles, agrin in neuromuscular junctions, neurexin in the CNS, and pikachurin in the eye, leading to various symptoms. The genetic heterogeneity associated with the development of α-dystroglycanopathies poses significant challenges to developing a generalized treatment to address the spectrum of genetic defects. Here, we propose the development of a bispecific antibody (biAb) that functions as a surrogate molecular linker to reconnect laminin-211 and the dystroglycan beta-subunit to ameliorate sarcolemmal fragility, a primary pathology in patients with α-dystroglycan-related muscular dystrophies. We show that the treatment of LARGE(myd-3J) mice, an α-dystroglycanopathy model, with the biAb improved muscle function and protected muscles from exercise-induced damage. These results demonstrate the viability of a biAb that binds to laminin-211 and dystroglycan simultaneously as a potential treatment for patients with α-dystroglycanopathy.
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spelling pubmed-70010802021-02-05 biAb Mediated Restoration of the Linkage between Dystroglycan and Laminin-211 as a Therapeutic Approach for α-Dystroglycanopathies Gumlaw, Nathan Sevigny, Leila M. Zhao, Hongmei Luo, Zhengyu Bangari, Dinesh S. Masterjohn, Elizabeth Chen, Yangde McDonald, Barbara Magnay, Maureen Travaline, Tara Yoshida-Moriguchi, Takako Fan, Wei Reczek, David Stefano, James E. Qiu, Huawei Beil, Christian Lange, Christian Rao, Ercole Lukason, Michael Barry, Elizabeth Brondyk, William H. Zhu, Yunxiang Cheng, Seng H. Mol Ther Original Article Patients with α-dystroglycanopathies, a subgroup of rare congenital muscular dystrophies, present with a spectrum of clinical manifestations that includes muscular dystrophy as well as CNS and ocular abnormalities. Although patients with α-dystroglycanopathies are genetically heterogeneous, they share a common defect of aberrant post-translational glycosylation modification of the dystroglycan alpha-subunit, which renders it defective in binding to several extracellular ligands such as laminin-211 in skeletal muscles, agrin in neuromuscular junctions, neurexin in the CNS, and pikachurin in the eye, leading to various symptoms. The genetic heterogeneity associated with the development of α-dystroglycanopathies poses significant challenges to developing a generalized treatment to address the spectrum of genetic defects. Here, we propose the development of a bispecific antibody (biAb) that functions as a surrogate molecular linker to reconnect laminin-211 and the dystroglycan beta-subunit to ameliorate sarcolemmal fragility, a primary pathology in patients with α-dystroglycan-related muscular dystrophies. We show that the treatment of LARGE(myd-3J) mice, an α-dystroglycanopathy model, with the biAb improved muscle function and protected muscles from exercise-induced damage. These results demonstrate the viability of a biAb that binds to laminin-211 and dystroglycan simultaneously as a potential treatment for patients with α-dystroglycanopathy. American Society of Gene & Cell Therapy 2020-02-05 2019-12-06 /pmc/articles/PMC7001080/ /pubmed/31843448 http://dx.doi.org/10.1016/j.ymthe.2019.11.023 Text en © 2019 The Author(s) http://creativecommons.org/licenses/by-nc-nd/4.0/ This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Original Article
Gumlaw, Nathan
Sevigny, Leila M.
Zhao, Hongmei
Luo, Zhengyu
Bangari, Dinesh S.
Masterjohn, Elizabeth
Chen, Yangde
McDonald, Barbara
Magnay, Maureen
Travaline, Tara
Yoshida-Moriguchi, Takako
Fan, Wei
Reczek, David
Stefano, James E.
Qiu, Huawei
Beil, Christian
Lange, Christian
Rao, Ercole
Lukason, Michael
Barry, Elizabeth
Brondyk, William H.
Zhu, Yunxiang
Cheng, Seng H.
biAb Mediated Restoration of the Linkage between Dystroglycan and Laminin-211 as a Therapeutic Approach for α-Dystroglycanopathies
title biAb Mediated Restoration of the Linkage between Dystroglycan and Laminin-211 as a Therapeutic Approach for α-Dystroglycanopathies
title_full biAb Mediated Restoration of the Linkage between Dystroglycan and Laminin-211 as a Therapeutic Approach for α-Dystroglycanopathies
title_fullStr biAb Mediated Restoration of the Linkage between Dystroglycan and Laminin-211 as a Therapeutic Approach for α-Dystroglycanopathies
title_full_unstemmed biAb Mediated Restoration of the Linkage between Dystroglycan and Laminin-211 as a Therapeutic Approach for α-Dystroglycanopathies
title_short biAb Mediated Restoration of the Linkage between Dystroglycan and Laminin-211 as a Therapeutic Approach for α-Dystroglycanopathies
title_sort biab mediated restoration of the linkage between dystroglycan and laminin-211 as a therapeutic approach for α-dystroglycanopathies
topic Original Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7001080/
https://www.ncbi.nlm.nih.gov/pubmed/31843448
http://dx.doi.org/10.1016/j.ymthe.2019.11.023
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