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Alternatively Spliced Tissue Factor Is Not Sufficient for Embryonic Development

Tissue factor (TF) triggers blood coagulation and is translated from two mRNA splice isoforms, encoding membrane-anchored full-length TF (flTF) and soluble alternatively-spliced TF (asTF). The complete knockout of TF in mice causes embryonic lethality associated with failure of the yolk sac vasculat...

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Autores principales: Sluka, Susanna H. M., Akhmedov, Alexander, Vogel, Johannes, Unruh, Dusten, Bogdanov, Vladimir Y., Camici, Giovanni G., Lüscher, Thomas F., Ruf, Wolfram, Tanner, Felix C.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Public Library of Science 2014
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4039448/
https://www.ncbi.nlm.nih.gov/pubmed/24879059
http://dx.doi.org/10.1371/journal.pone.0097793
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author Sluka, Susanna H. M.
Akhmedov, Alexander
Vogel, Johannes
Unruh, Dusten
Bogdanov, Vladimir Y.
Camici, Giovanni G.
Lüscher, Thomas F.
Ruf, Wolfram
Tanner, Felix C.
author_facet Sluka, Susanna H. M.
Akhmedov, Alexander
Vogel, Johannes
Unruh, Dusten
Bogdanov, Vladimir Y.
Camici, Giovanni G.
Lüscher, Thomas F.
Ruf, Wolfram
Tanner, Felix C.
author_sort Sluka, Susanna H. M.
collection PubMed
description Tissue factor (TF) triggers blood coagulation and is translated from two mRNA splice isoforms, encoding membrane-anchored full-length TF (flTF) and soluble alternatively-spliced TF (asTF). The complete knockout of TF in mice causes embryonic lethality associated with failure of the yolk sac vasculature. Although asTF plays roles in postnatal angiogenesis, it is unknown whether it activates coagulation sufficiently or makes previously unrecognized contributions to sustaining integrity of embryonic yolk sac vessels. Using gene knock-in into the mouse TF locus, homozygous asTF knock-in (asTFKI) mice, which express murine asTF in the absence of flTF, exhibited embryonic lethality between day 9.5 and 10.5. Day 9.5 homozygous asTFKI embryos expressed asTF protein, but no procoagulant activity was detectable in a plasma clotting assay. Although the α-smooth-muscle-actin positive mesodermal layer as well as blood islands developed similarly in day 8.5 wild-type or homozygous asTFKI embryos, erythrocytes were progressively lost from disintegrating yolk sac vessels of asTFKI embryos by day 10.5. These data show that in the absence of flTF, asTF expressed during embryonic development has no measurable procoagulant activity, does not support embryonic vessel stability by non-coagulant mechanisms, and fails to maintain a functional vasculature and embryonic survival.
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spelling pubmed-40394482014-06-02 Alternatively Spliced Tissue Factor Is Not Sufficient for Embryonic Development Sluka, Susanna H. M. Akhmedov, Alexander Vogel, Johannes Unruh, Dusten Bogdanov, Vladimir Y. Camici, Giovanni G. Lüscher, Thomas F. Ruf, Wolfram Tanner, Felix C. PLoS One Research Article Tissue factor (TF) triggers blood coagulation and is translated from two mRNA splice isoforms, encoding membrane-anchored full-length TF (flTF) and soluble alternatively-spliced TF (asTF). The complete knockout of TF in mice causes embryonic lethality associated with failure of the yolk sac vasculature. Although asTF plays roles in postnatal angiogenesis, it is unknown whether it activates coagulation sufficiently or makes previously unrecognized contributions to sustaining integrity of embryonic yolk sac vessels. Using gene knock-in into the mouse TF locus, homozygous asTF knock-in (asTFKI) mice, which express murine asTF in the absence of flTF, exhibited embryonic lethality between day 9.5 and 10.5. Day 9.5 homozygous asTFKI embryos expressed asTF protein, but no procoagulant activity was detectable in a plasma clotting assay. Although the α-smooth-muscle-actin positive mesodermal layer as well as blood islands developed similarly in day 8.5 wild-type or homozygous asTFKI embryos, erythrocytes were progressively lost from disintegrating yolk sac vessels of asTFKI embryos by day 10.5. These data show that in the absence of flTF, asTF expressed during embryonic development has no measurable procoagulant activity, does not support embryonic vessel stability by non-coagulant mechanisms, and fails to maintain a functional vasculature and embryonic survival. Public Library of Science 2014-05-30 /pmc/articles/PMC4039448/ /pubmed/24879059 http://dx.doi.org/10.1371/journal.pone.0097793 Text en © 2014 Sluka et al http://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original author and source are properly credited.
spellingShingle Research Article
Sluka, Susanna H. M.
Akhmedov, Alexander
Vogel, Johannes
Unruh, Dusten
Bogdanov, Vladimir Y.
Camici, Giovanni G.
Lüscher, Thomas F.
Ruf, Wolfram
Tanner, Felix C.
Alternatively Spliced Tissue Factor Is Not Sufficient for Embryonic Development
title Alternatively Spliced Tissue Factor Is Not Sufficient for Embryonic Development
title_full Alternatively Spliced Tissue Factor Is Not Sufficient for Embryonic Development
title_fullStr Alternatively Spliced Tissue Factor Is Not Sufficient for Embryonic Development
title_full_unstemmed Alternatively Spliced Tissue Factor Is Not Sufficient for Embryonic Development
title_short Alternatively Spliced Tissue Factor Is Not Sufficient for Embryonic Development
title_sort alternatively spliced tissue factor is not sufficient for embryonic development
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC4039448/
https://www.ncbi.nlm.nih.gov/pubmed/24879059
http://dx.doi.org/10.1371/journal.pone.0097793
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