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Functional and structural studies of tolloid-like 1 mutants associated with atrial-septal defect 6

Inactive mammalian tolloid-like 1 (tll1) and mutations detected in tolloid-like 1 (TLL1) have been linked to the lack of the heart septa formation in mice and to a similar human inborn condition called atrial-septal defect 6 (ASD6; OMIM 613087, formerly ASD II). Previously, we reported four point mu...

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Autores principales: Sieron, Lukasz, Lesiak, Marta, Schisler, Izabela, Drzazga, Zofia, Fertala, Andrzej, Sieron, Aleksander L.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Portland Press Ltd. 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6328869/
https://www.ncbi.nlm.nih.gov/pubmed/30538173
http://dx.doi.org/10.1042/BSR20180270
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author Sieron, Lukasz
Lesiak, Marta
Schisler, Izabela
Drzazga, Zofia
Fertala, Andrzej
Sieron, Aleksander L.
author_facet Sieron, Lukasz
Lesiak, Marta
Schisler, Izabela
Drzazga, Zofia
Fertala, Andrzej
Sieron, Aleksander L.
author_sort Sieron, Lukasz
collection PubMed
description Inactive mammalian tolloid-like 1 (tll1) and mutations detected in tolloid-like 1 (TLL1) have been linked to the lack of the heart septa formation in mice and to a similar human inborn condition called atrial-septal defect 6 (ASD6; OMIM 613087, formerly ASD II). Previously, we reported four point mutations in TLL1 found in approximately 20% of ASD6 patients. Three mutations in the coding sequence were M182L, V238A, and I629V. In this work, we present the effects of these mutations on TLL1 function. Three recombinant cDNA constructs carrying the mutations and one wild-type construct were prepared and then expressed in HT-1080 cells. Corresponding recombinant proteins were analyzed for their metalloendopeptidase activity using a native substrate, chordin. The results of these assays demonstrated that in comparison with the native TLL1, mutants cleaved chordin and procollagen I at significantly lower rates. CD analyses revealed significant structural differences between the higher order structure of wild-type and mutant variants. Moreover, biosensor-based assays of binding interactions between TLL1 variants and chordin demonstrated a significant decrease in the binding affinities of the mutated variants. The results from this work indicate that mutations detected in TLL1 of ASD6 patients altered its metalloendopeptidase activity, structure, and substrate-binding properties, thereby suggesting a possible pathomechanism of ASD6.
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spelling pubmed-63288692019-01-18 Functional and structural studies of tolloid-like 1 mutants associated with atrial-septal defect 6 Sieron, Lukasz Lesiak, Marta Schisler, Izabela Drzazga, Zofia Fertala, Andrzej Sieron, Aleksander L. Biosci Rep Research Articles Inactive mammalian tolloid-like 1 (tll1) and mutations detected in tolloid-like 1 (TLL1) have been linked to the lack of the heart septa formation in mice and to a similar human inborn condition called atrial-septal defect 6 (ASD6; OMIM 613087, formerly ASD II). Previously, we reported four point mutations in TLL1 found in approximately 20% of ASD6 patients. Three mutations in the coding sequence were M182L, V238A, and I629V. In this work, we present the effects of these mutations on TLL1 function. Three recombinant cDNA constructs carrying the mutations and one wild-type construct were prepared and then expressed in HT-1080 cells. Corresponding recombinant proteins were analyzed for their metalloendopeptidase activity using a native substrate, chordin. The results of these assays demonstrated that in comparison with the native TLL1, mutants cleaved chordin and procollagen I at significantly lower rates. CD analyses revealed significant structural differences between the higher order structure of wild-type and mutant variants. Moreover, biosensor-based assays of binding interactions between TLL1 variants and chordin demonstrated a significant decrease in the binding affinities of the mutated variants. The results from this work indicate that mutations detected in TLL1 of ASD6 patients altered its metalloendopeptidase activity, structure, and substrate-binding properties, thereby suggesting a possible pathomechanism of ASD6. Portland Press Ltd. 2019-01-08 /pmc/articles/PMC6328869/ /pubmed/30538173 http://dx.doi.org/10.1042/BSR20180270 Text en © 2018 The Author(s). http://creativecommons.org/licenses/by/4.0/This is an open access article published by Portland Press Limited on behalf of the Biochemical Society and distributed under the Creative Commons Attribution License 4.0 (CC BY) (http://creativecommons.org/licenses/by/4.0/) .
spellingShingle Research Articles
Sieron, Lukasz
Lesiak, Marta
Schisler, Izabela
Drzazga, Zofia
Fertala, Andrzej
Sieron, Aleksander L.
Functional and structural studies of tolloid-like 1 mutants associated with atrial-septal defect 6
title Functional and structural studies of tolloid-like 1 mutants associated with atrial-septal defect 6
title_full Functional and structural studies of tolloid-like 1 mutants associated with atrial-septal defect 6
title_fullStr Functional and structural studies of tolloid-like 1 mutants associated with atrial-septal defect 6
title_full_unstemmed Functional and structural studies of tolloid-like 1 mutants associated with atrial-septal defect 6
title_short Functional and structural studies of tolloid-like 1 mutants associated with atrial-septal defect 6
title_sort functional and structural studies of tolloid-like 1 mutants associated with atrial-septal defect 6
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6328869/
https://www.ncbi.nlm.nih.gov/pubmed/30538173
http://dx.doi.org/10.1042/BSR20180270
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