Cargando…
Hyperlipidaemia and IFNgamma/TNFalpha Synergism are associated with cholesterol crystal formation in Endothelial cells partly through modulation of Lysosomal pH and Cholesterol homeostasis
BACKGROUND: Inflammation plays an important role in the development of cardiovascular disease (CVD). Patients with chronic inflammation diseases have high levels of inflammation and early fatal myocardial infarction due to early, unstable coronary plaques. Cholesterol crystals (CC) play a key role i...
Autores principales: | , , , , , , , , , , , , , , , , , , , , , , , , , , |
---|---|
Formato: | Online Artículo Texto |
Lenguaje: | English |
Publicado: |
Elsevier
2020
|
Materias: | |
Acceso en línea: | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7502673/ https://www.ncbi.nlm.nih.gov/pubmed/32646751 http://dx.doi.org/10.1016/j.ebiom.2020.102876 |
_version_ | 1783584248956977152 |
---|---|
author | Baumer, Yvonne Dey, Amit K. Gutierrez-Huerta, Cristhian A. Khalil, Noor O. Sekine, Yusuke Sanda, Gregory E. Zhuang, Jie Saxena, Ankit Stempinski, Erin Elnabawi, Youssef A. Dagur, Pradeep K. Ng, Qimin Teague, Heather L. Keel, Andrew Rodante, Justin A. Boisvert, William A. Tsoi, Lam C. Gudjonsson, Johann E. Bleck, Christopher K.E. Chen, Marcus Y. Bluemke, David A. Gelfand, Joel M. Schwartz, Daniella M. Kruth, Howard S. Powell-Wiley, Tiffany M. Playford, Martin P. Mehta, Nehal N. |
author_facet | Baumer, Yvonne Dey, Amit K. Gutierrez-Huerta, Cristhian A. Khalil, Noor O. Sekine, Yusuke Sanda, Gregory E. Zhuang, Jie Saxena, Ankit Stempinski, Erin Elnabawi, Youssef A. Dagur, Pradeep K. Ng, Qimin Teague, Heather L. Keel, Andrew Rodante, Justin A. Boisvert, William A. Tsoi, Lam C. Gudjonsson, Johann E. Bleck, Christopher K.E. Chen, Marcus Y. Bluemke, David A. Gelfand, Joel M. Schwartz, Daniella M. Kruth, Howard S. Powell-Wiley, Tiffany M. Playford, Martin P. Mehta, Nehal N. |
author_sort | Baumer, Yvonne |
collection | PubMed |
description | BACKGROUND: Inflammation plays an important role in the development of cardiovascular disease (CVD). Patients with chronic inflammation diseases have high levels of inflammation and early fatal myocardial infarction due to early, unstable coronary plaques. Cholesterol crystals (CC) play a key role in atherogenesis. However, the underlying mechanisms of endothelial cell (EC)-derived CC formation are not well understood in chronic inflammation. METHODS: We utilized a combination of a mouse psoriasis model (K14-Rac1V12 mouse model) and human psoriasis patients to study the effect of inflammatory cytokines on CC formation in ECs. Lysosomal pH, alterations in lipid load and inflammatory proteins were evaluated as potential mechanisms linking inflammatory cytokines to CC formation. Coronary CT angiography was performed (n = 224) to characterize potential IFNγ and TNFα synergism on vascular diseases in vivo. FINDINGS: We detected CC presence in the aorta of K14-Rac1V12 mice on chow diet. IFNγ and TNFα were found to synergistically increase LDL-induced CC formation by almost 2-fold. There was an increase in lysosomal pH accompanied by a 28% loss in pH-dependent lysosomal signal and altered vATPaseV1E1 expression patterns. In parallel, we found that LDL+IFNγ/TNFα treatments increased free cholesterol content within EC and led to a decrease in SOAT-1 expression, an enzyme critically involved cholesterol homeostasis. Finally, the product of IFNγ and TNFα positively associated with early non-calcified coronary burden in patients with psoriasis (n = 224; β = 0.28, p < 0.001). INTERPRETATION: Our results provide evidence that IFNγ and TNFα accelerate CC formation in endothelial cells in part by altering lysosomal pH and free cholesterol load. These changes promote early atherogenesis and contribute to understanding the burden of CVD in psoriasis. FUNDING: Funding was provided by the Intramural Research Program at NIH (NNM) and the National Psoriasis Foundation (NNM and YB). |
format | Online Article Text |
id | pubmed-7502673 |
institution | National Center for Biotechnology Information |
language | English |
publishDate | 2020 |
publisher | Elsevier |
record_format | MEDLINE/PubMed |
spelling | pubmed-75026732020-09-28 Hyperlipidaemia and IFNgamma/TNFalpha Synergism are associated with cholesterol crystal formation in Endothelial cells partly through modulation of Lysosomal pH and Cholesterol homeostasis Baumer, Yvonne Dey, Amit K. Gutierrez-Huerta, Cristhian A. Khalil, Noor O. Sekine, Yusuke Sanda, Gregory E. Zhuang, Jie Saxena, Ankit Stempinski, Erin Elnabawi, Youssef A. Dagur, Pradeep K. Ng, Qimin Teague, Heather L. Keel, Andrew Rodante, Justin A. Boisvert, William A. Tsoi, Lam C. Gudjonsson, Johann E. Bleck, Christopher K.E. Chen, Marcus Y. Bluemke, David A. Gelfand, Joel M. Schwartz, Daniella M. Kruth, Howard S. Powell-Wiley, Tiffany M. Playford, Martin P. Mehta, Nehal N. EBioMedicine Research Paper BACKGROUND: Inflammation plays an important role in the development of cardiovascular disease (CVD). Patients with chronic inflammation diseases have high levels of inflammation and early fatal myocardial infarction due to early, unstable coronary plaques. Cholesterol crystals (CC) play a key role in atherogenesis. However, the underlying mechanisms of endothelial cell (EC)-derived CC formation are not well understood in chronic inflammation. METHODS: We utilized a combination of a mouse psoriasis model (K14-Rac1V12 mouse model) and human psoriasis patients to study the effect of inflammatory cytokines on CC formation in ECs. Lysosomal pH, alterations in lipid load and inflammatory proteins were evaluated as potential mechanisms linking inflammatory cytokines to CC formation. Coronary CT angiography was performed (n = 224) to characterize potential IFNγ and TNFα synergism on vascular diseases in vivo. FINDINGS: We detected CC presence in the aorta of K14-Rac1V12 mice on chow diet. IFNγ and TNFα were found to synergistically increase LDL-induced CC formation by almost 2-fold. There was an increase in lysosomal pH accompanied by a 28% loss in pH-dependent lysosomal signal and altered vATPaseV1E1 expression patterns. In parallel, we found that LDL+IFNγ/TNFα treatments increased free cholesterol content within EC and led to a decrease in SOAT-1 expression, an enzyme critically involved cholesterol homeostasis. Finally, the product of IFNγ and TNFα positively associated with early non-calcified coronary burden in patients with psoriasis (n = 224; β = 0.28, p < 0.001). INTERPRETATION: Our results provide evidence that IFNγ and TNFα accelerate CC formation in endothelial cells in part by altering lysosomal pH and free cholesterol load. These changes promote early atherogenesis and contribute to understanding the burden of CVD in psoriasis. FUNDING: Funding was provided by the Intramural Research Program at NIH (NNM) and the National Psoriasis Foundation (NNM and YB). Elsevier 2020-07-06 /pmc/articles/PMC7502673/ /pubmed/32646751 http://dx.doi.org/10.1016/j.ebiom.2020.102876 Text en http://creativecommons.org/licenses/by/4.0/ This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/). |
spellingShingle | Research Paper Baumer, Yvonne Dey, Amit K. Gutierrez-Huerta, Cristhian A. Khalil, Noor O. Sekine, Yusuke Sanda, Gregory E. Zhuang, Jie Saxena, Ankit Stempinski, Erin Elnabawi, Youssef A. Dagur, Pradeep K. Ng, Qimin Teague, Heather L. Keel, Andrew Rodante, Justin A. Boisvert, William A. Tsoi, Lam C. Gudjonsson, Johann E. Bleck, Christopher K.E. Chen, Marcus Y. Bluemke, David A. Gelfand, Joel M. Schwartz, Daniella M. Kruth, Howard S. Powell-Wiley, Tiffany M. Playford, Martin P. Mehta, Nehal N. Hyperlipidaemia and IFNgamma/TNFalpha Synergism are associated with cholesterol crystal formation in Endothelial cells partly through modulation of Lysosomal pH and Cholesterol homeostasis |
title | Hyperlipidaemia and IFNgamma/TNFalpha Synergism are associated with cholesterol crystal formation in Endothelial cells partly through modulation of Lysosomal pH and Cholesterol homeostasis |
title_full | Hyperlipidaemia and IFNgamma/TNFalpha Synergism are associated with cholesterol crystal formation in Endothelial cells partly through modulation of Lysosomal pH and Cholesterol homeostasis |
title_fullStr | Hyperlipidaemia and IFNgamma/TNFalpha Synergism are associated with cholesterol crystal formation in Endothelial cells partly through modulation of Lysosomal pH and Cholesterol homeostasis |
title_full_unstemmed | Hyperlipidaemia and IFNgamma/TNFalpha Synergism are associated with cholesterol crystal formation in Endothelial cells partly through modulation of Lysosomal pH and Cholesterol homeostasis |
title_short | Hyperlipidaemia and IFNgamma/TNFalpha Synergism are associated with cholesterol crystal formation in Endothelial cells partly through modulation of Lysosomal pH and Cholesterol homeostasis |
title_sort | hyperlipidaemia and ifngamma/tnfalpha synergism are associated with cholesterol crystal formation in endothelial cells partly through modulation of lysosomal ph and cholesterol homeostasis |
topic | Research Paper |
url | https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7502673/ https://www.ncbi.nlm.nih.gov/pubmed/32646751 http://dx.doi.org/10.1016/j.ebiom.2020.102876 |
work_keys_str_mv | AT baumeryvonne hyperlipidaemiaandifngammatnfalphasynergismareassociatedwithcholesterolcrystalformationinendothelialcellspartlythroughmodulationoflysosomalphandcholesterolhomeostasis AT deyamitk hyperlipidaemiaandifngammatnfalphasynergismareassociatedwithcholesterolcrystalformationinendothelialcellspartlythroughmodulationoflysosomalphandcholesterolhomeostasis AT gutierrezhuertacristhiana hyperlipidaemiaandifngammatnfalphasynergismareassociatedwithcholesterolcrystalformationinendothelialcellspartlythroughmodulationoflysosomalphandcholesterolhomeostasis AT khalilnooro hyperlipidaemiaandifngammatnfalphasynergismareassociatedwithcholesterolcrystalformationinendothelialcellspartlythroughmodulationoflysosomalphandcholesterolhomeostasis AT sekineyusuke hyperlipidaemiaandifngammatnfalphasynergismareassociatedwithcholesterolcrystalformationinendothelialcellspartlythroughmodulationoflysosomalphandcholesterolhomeostasis AT sandagregorye hyperlipidaemiaandifngammatnfalphasynergismareassociatedwithcholesterolcrystalformationinendothelialcellspartlythroughmodulationoflysosomalphandcholesterolhomeostasis AT zhuangjie hyperlipidaemiaandifngammatnfalphasynergismareassociatedwithcholesterolcrystalformationinendothelialcellspartlythroughmodulationoflysosomalphandcholesterolhomeostasis AT saxenaankit hyperlipidaemiaandifngammatnfalphasynergismareassociatedwithcholesterolcrystalformationinendothelialcellspartlythroughmodulationoflysosomalphandcholesterolhomeostasis AT stempinskierin hyperlipidaemiaandifngammatnfalphasynergismareassociatedwithcholesterolcrystalformationinendothelialcellspartlythroughmodulationoflysosomalphandcholesterolhomeostasis AT elnabawiyoussefa hyperlipidaemiaandifngammatnfalphasynergismareassociatedwithcholesterolcrystalformationinendothelialcellspartlythroughmodulationoflysosomalphandcholesterolhomeostasis AT dagurpradeepk hyperlipidaemiaandifngammatnfalphasynergismareassociatedwithcholesterolcrystalformationinendothelialcellspartlythroughmodulationoflysosomalphandcholesterolhomeostasis AT ngqimin hyperlipidaemiaandifngammatnfalphasynergismareassociatedwithcholesterolcrystalformationinendothelialcellspartlythroughmodulationoflysosomalphandcholesterolhomeostasis AT teagueheatherl hyperlipidaemiaandifngammatnfalphasynergismareassociatedwithcholesterolcrystalformationinendothelialcellspartlythroughmodulationoflysosomalphandcholesterolhomeostasis AT keelandrew hyperlipidaemiaandifngammatnfalphasynergismareassociatedwithcholesterolcrystalformationinendothelialcellspartlythroughmodulationoflysosomalphandcholesterolhomeostasis AT rodantejustina hyperlipidaemiaandifngammatnfalphasynergismareassociatedwithcholesterolcrystalformationinendothelialcellspartlythroughmodulationoflysosomalphandcholesterolhomeostasis AT boisvertwilliama hyperlipidaemiaandifngammatnfalphasynergismareassociatedwithcholesterolcrystalformationinendothelialcellspartlythroughmodulationoflysosomalphandcholesterolhomeostasis AT tsoilamc hyperlipidaemiaandifngammatnfalphasynergismareassociatedwithcholesterolcrystalformationinendothelialcellspartlythroughmodulationoflysosomalphandcholesterolhomeostasis AT gudjonssonjohanne hyperlipidaemiaandifngammatnfalphasynergismareassociatedwithcholesterolcrystalformationinendothelialcellspartlythroughmodulationoflysosomalphandcholesterolhomeostasis AT bleckchristopherke hyperlipidaemiaandifngammatnfalphasynergismareassociatedwithcholesterolcrystalformationinendothelialcellspartlythroughmodulationoflysosomalphandcholesterolhomeostasis AT chenmarcusy hyperlipidaemiaandifngammatnfalphasynergismareassociatedwithcholesterolcrystalformationinendothelialcellspartlythroughmodulationoflysosomalphandcholesterolhomeostasis AT bluemkedavida hyperlipidaemiaandifngammatnfalphasynergismareassociatedwithcholesterolcrystalformationinendothelialcellspartlythroughmodulationoflysosomalphandcholesterolhomeostasis AT gelfandjoelm hyperlipidaemiaandifngammatnfalphasynergismareassociatedwithcholesterolcrystalformationinendothelialcellspartlythroughmodulationoflysosomalphandcholesterolhomeostasis AT schwartzdaniellam hyperlipidaemiaandifngammatnfalphasynergismareassociatedwithcholesterolcrystalformationinendothelialcellspartlythroughmodulationoflysosomalphandcholesterolhomeostasis AT kruthhowards hyperlipidaemiaandifngammatnfalphasynergismareassociatedwithcholesterolcrystalformationinendothelialcellspartlythroughmodulationoflysosomalphandcholesterolhomeostasis AT powellwileytiffanym hyperlipidaemiaandifngammatnfalphasynergismareassociatedwithcholesterolcrystalformationinendothelialcellspartlythroughmodulationoflysosomalphandcholesterolhomeostasis AT playfordmartinp hyperlipidaemiaandifngammatnfalphasynergismareassociatedwithcholesterolcrystalformationinendothelialcellspartlythroughmodulationoflysosomalphandcholesterolhomeostasis AT mehtanehaln hyperlipidaemiaandifngammatnfalphasynergismareassociatedwithcholesterolcrystalformationinendothelialcellspartlythroughmodulationoflysosomalphandcholesterolhomeostasis |