Cargando…

A Complex Extracellular Sphingomyelinase of Pseudomonas aeruginosa Inhibits Angiogenesis by Selective Cytotoxicity to Endothelial Cells

The hemolytic phospholipase C (PlcHR) expressed by Pseudomonas aeruginosa is the original member of a Phosphoesterase Superfamily, which includes phosphorylcholine-specific phospholipases C (PC-PLC) produced by frank and opportunistic pathogens. PlcHR, but not all its family members, is also a poten...

Descripción completa

Detalles Bibliográficos
Autores principales: Vasil, Michael L., Stonehouse, Martin J., Vasil, Adriana I., Wadsworth, Sandra J., Goldfine, Howard, Bolcome, Robert E., Chan, Joanne
Formato: Texto
Lenguaje:English
Publicado: Public Library of Science 2009
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2673038/
https://www.ncbi.nlm.nih.gov/pubmed/19424430
http://dx.doi.org/10.1371/journal.ppat.1000420
_version_ 1782166568842559488
author Vasil, Michael L.
Stonehouse, Martin J.
Vasil, Adriana I.
Wadsworth, Sandra J.
Goldfine, Howard
Bolcome, Robert E.
Chan, Joanne
author_facet Vasil, Michael L.
Stonehouse, Martin J.
Vasil, Adriana I.
Wadsworth, Sandra J.
Goldfine, Howard
Bolcome, Robert E.
Chan, Joanne
author_sort Vasil, Michael L.
collection PubMed
description The hemolytic phospholipase C (PlcHR) expressed by Pseudomonas aeruginosa is the original member of a Phosphoesterase Superfamily, which includes phosphorylcholine-specific phospholipases C (PC-PLC) produced by frank and opportunistic pathogens. PlcHR, but not all its family members, is also a potent sphingomyelinase (SMase). Data presented herein indicate that picomolar (pM) concentrations of PlcHR are selectively lethal to endothelial cells (EC). An RGD motif of PlcHR contributes to this selectivity. Peptides containing an RGD motif (i.e., GRGDS), but not control peptides (i.e., GDGRS), block the effects of PlcHR on calcium signaling and cytotoxicity to EC. Moreover, RGD variants of PlcHR (e.g., RGE, KGD) are significantly reduced in their binding and toxicity, but retain the enzymatic activity of the wild type PlcHR. PlcHR also inhibits several EC-dependent in vitro assays (i.e., EC migration, EC invasion, and EC tubule formation), which represent key processes involved in angiogenesis (i.e., formation of new blood vessels from existing vasculature). Finally, the impact of PlcHR in an in vivo model of angiogenesis in transgenic zebrafish, and ones treated with an antisense morpholino to knock down a key blood cell regulator, were evaluated because in vitro assays cannot fully represent the complex processes of angiogenesis. As little as 2 ng/embryo of PlcHR was lethal to ∼50% of EGFP-labeled EC at 6 h after injection of embryos at 48 hpf (hours post-fertilization). An active site mutant of PlcHR (Thr178Ala) exhibited 120-fold reduced inhibitory activity in the EC invasion assay, and 20 ng/embryo elicited no detectable inhibitory activity in the zebrafish model. Taken together, these observations are pertinent to the distinctive vasculitis and poor wound healing associated with P. aeruginosa sepsis and suggest that the potent antiangiogenic properties of PlcHR are worthy of further investigation for the treatment of diseases where angiogenesis contributes pathological conditions (e.g., vascularization of tumors, diabetic retinopathy).
format Text
id pubmed-2673038
institution National Center for Biotechnology Information
language English
publishDate 2009
publisher Public Library of Science
record_format MEDLINE/PubMed
spelling pubmed-26730382009-05-08 A Complex Extracellular Sphingomyelinase of Pseudomonas aeruginosa Inhibits Angiogenesis by Selective Cytotoxicity to Endothelial Cells Vasil, Michael L. Stonehouse, Martin J. Vasil, Adriana I. Wadsworth, Sandra J. Goldfine, Howard Bolcome, Robert E. Chan, Joanne PLoS Pathog Research Article The hemolytic phospholipase C (PlcHR) expressed by Pseudomonas aeruginosa is the original member of a Phosphoesterase Superfamily, which includes phosphorylcholine-specific phospholipases C (PC-PLC) produced by frank and opportunistic pathogens. PlcHR, but not all its family members, is also a potent sphingomyelinase (SMase). Data presented herein indicate that picomolar (pM) concentrations of PlcHR are selectively lethal to endothelial cells (EC). An RGD motif of PlcHR contributes to this selectivity. Peptides containing an RGD motif (i.e., GRGDS), but not control peptides (i.e., GDGRS), block the effects of PlcHR on calcium signaling and cytotoxicity to EC. Moreover, RGD variants of PlcHR (e.g., RGE, KGD) are significantly reduced in their binding and toxicity, but retain the enzymatic activity of the wild type PlcHR. PlcHR also inhibits several EC-dependent in vitro assays (i.e., EC migration, EC invasion, and EC tubule formation), which represent key processes involved in angiogenesis (i.e., formation of new blood vessels from existing vasculature). Finally, the impact of PlcHR in an in vivo model of angiogenesis in transgenic zebrafish, and ones treated with an antisense morpholino to knock down a key blood cell regulator, were evaluated because in vitro assays cannot fully represent the complex processes of angiogenesis. As little as 2 ng/embryo of PlcHR was lethal to ∼50% of EGFP-labeled EC at 6 h after injection of embryos at 48 hpf (hours post-fertilization). An active site mutant of PlcHR (Thr178Ala) exhibited 120-fold reduced inhibitory activity in the EC invasion assay, and 20 ng/embryo elicited no detectable inhibitory activity in the zebrafish model. Taken together, these observations are pertinent to the distinctive vasculitis and poor wound healing associated with P. aeruginosa sepsis and suggest that the potent antiangiogenic properties of PlcHR are worthy of further investigation for the treatment of diseases where angiogenesis contributes pathological conditions (e.g., vascularization of tumors, diabetic retinopathy). Public Library of Science 2009-05-08 /pmc/articles/PMC2673038/ /pubmed/19424430 http://dx.doi.org/10.1371/journal.ppat.1000420 Text en Vasil 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
Vasil, Michael L.
Stonehouse, Martin J.
Vasil, Adriana I.
Wadsworth, Sandra J.
Goldfine, Howard
Bolcome, Robert E.
Chan, Joanne
A Complex Extracellular Sphingomyelinase of Pseudomonas aeruginosa Inhibits Angiogenesis by Selective Cytotoxicity to Endothelial Cells
title A Complex Extracellular Sphingomyelinase of Pseudomonas aeruginosa Inhibits Angiogenesis by Selective Cytotoxicity to Endothelial Cells
title_full A Complex Extracellular Sphingomyelinase of Pseudomonas aeruginosa Inhibits Angiogenesis by Selective Cytotoxicity to Endothelial Cells
title_fullStr A Complex Extracellular Sphingomyelinase of Pseudomonas aeruginosa Inhibits Angiogenesis by Selective Cytotoxicity to Endothelial Cells
title_full_unstemmed A Complex Extracellular Sphingomyelinase of Pseudomonas aeruginosa Inhibits Angiogenesis by Selective Cytotoxicity to Endothelial Cells
title_short A Complex Extracellular Sphingomyelinase of Pseudomonas aeruginosa Inhibits Angiogenesis by Selective Cytotoxicity to Endothelial Cells
title_sort complex extracellular sphingomyelinase of pseudomonas aeruginosa inhibits angiogenesis by selective cytotoxicity to endothelial cells
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC2673038/
https://www.ncbi.nlm.nih.gov/pubmed/19424430
http://dx.doi.org/10.1371/journal.ppat.1000420
work_keys_str_mv AT vasilmichaell acomplexextracellularsphingomyelinaseofpseudomonasaeruginosainhibitsangiogenesisbyselectivecytotoxicitytoendothelialcells
AT stonehousemartinj acomplexextracellularsphingomyelinaseofpseudomonasaeruginosainhibitsangiogenesisbyselectivecytotoxicitytoendothelialcells
AT vasiladrianai acomplexextracellularsphingomyelinaseofpseudomonasaeruginosainhibitsangiogenesisbyselectivecytotoxicitytoendothelialcells
AT wadsworthsandraj acomplexextracellularsphingomyelinaseofpseudomonasaeruginosainhibitsangiogenesisbyselectivecytotoxicitytoendothelialcells
AT goldfinehoward acomplexextracellularsphingomyelinaseofpseudomonasaeruginosainhibitsangiogenesisbyselectivecytotoxicitytoendothelialcells
AT bolcomeroberte acomplexextracellularsphingomyelinaseofpseudomonasaeruginosainhibitsangiogenesisbyselectivecytotoxicitytoendothelialcells
AT chanjoanne acomplexextracellularsphingomyelinaseofpseudomonasaeruginosainhibitsangiogenesisbyselectivecytotoxicitytoendothelialcells
AT vasilmichaell complexextracellularsphingomyelinaseofpseudomonasaeruginosainhibitsangiogenesisbyselectivecytotoxicitytoendothelialcells
AT stonehousemartinj complexextracellularsphingomyelinaseofpseudomonasaeruginosainhibitsangiogenesisbyselectivecytotoxicitytoendothelialcells
AT vasiladrianai complexextracellularsphingomyelinaseofpseudomonasaeruginosainhibitsangiogenesisbyselectivecytotoxicitytoendothelialcells
AT wadsworthsandraj complexextracellularsphingomyelinaseofpseudomonasaeruginosainhibitsangiogenesisbyselectivecytotoxicitytoendothelialcells
AT goldfinehoward complexextracellularsphingomyelinaseofpseudomonasaeruginosainhibitsangiogenesisbyselectivecytotoxicitytoendothelialcells
AT bolcomeroberte complexextracellularsphingomyelinaseofpseudomonasaeruginosainhibitsangiogenesisbyselectivecytotoxicitytoendothelialcells
AT chanjoanne complexextracellularsphingomyelinaseofpseudomonasaeruginosainhibitsangiogenesisbyselectivecytotoxicitytoendothelialcells