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Stim1 Polymorphism Disrupts Immune Signaling and Creates Renal Injury in Hypertension

BACKGROUND: Spontaneously hypertensive rats of the stroke‐prone line (SHR‐A3) develop hypertensive renal disease as a result of naturally occurring genetic variation. Our prior work identified a single‐nucleotide polymorphism unique to SHR‐A3 that results in truncation of the carboxy terminus of STI...

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Autores principales: Dhande, Isha S., Zhu, Yaming, Kneedler, Sterling C., Joshi, Aniket S., Hicks, M. John, Wenderfer, Scott E., Braun, Michael C., Doris, Peter A.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7335582/
https://www.ncbi.nlm.nih.gov/pubmed/32075490
http://dx.doi.org/10.1161/JAHA.119.014142
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author Dhande, Isha S.
Zhu, Yaming
Kneedler, Sterling C.
Joshi, Aniket S.
Hicks, M. John
Wenderfer, Scott E.
Braun, Michael C.
Doris, Peter A.
author_facet Dhande, Isha S.
Zhu, Yaming
Kneedler, Sterling C.
Joshi, Aniket S.
Hicks, M. John
Wenderfer, Scott E.
Braun, Michael C.
Doris, Peter A.
author_sort Dhande, Isha S.
collection PubMed
description BACKGROUND: Spontaneously hypertensive rats of the stroke‐prone line (SHR‐A3) develop hypertensive renal disease as a result of naturally occurring genetic variation. Our prior work identified a single‐nucleotide polymorphism unique to SHR‐A3 that results in truncation of the carboxy terminus of STIM1. The SHR‐B2 line, which is also hypertensive but resists hypertensive renal injury, expresses the wild‐type STIM1. STIM1 plays a central role in lymphocyte calcium signaling that directs immune effector responses. Here we show that major defects in lymphocyte function affecting calcium signaling, nuclear factor of activated T cells activation, cytokine production, proliferation, apoptosis, and regulatory T‐cell development are present in SHR‐A3 and attributable to STIM1. METHODS AND RESULTS: To assess the role of Stim1 variation in susceptibility to hypertensive renal injury, we created a Stim1 congenic line, SHR‐A3(Stim1‐B2), and STIM1 function was rescued in SHR‐A3. We found that Stim1 gene rescue restores disturbed lymphocyte function in SHR‐A3. Hypertensive renal injury was compared in SHR‐A3 and the SHR‐A3(Stim1‐B2) congenic line. Histologically assessed renal injury was markedly reduced in SHR‐A3(Stim1‐B2), as were renal injury biomarker levels measured in urine. Stim1 deficiency has been linked to the emergence of antibody‐mediated autoimmunity. Renal glomerular immunoglobulin deposition was greater in SHR‐A3 than SHR‐B2 and was reduced by Stim1 congenic substitution. Serum anti–double‐stranded DNA antibody titers in SHR‐A3 were elevated compared with SHR‐B2 and were reduced in SHR‐A3(Stim1‐B2). CONCLUSIONS: Stim1 deficiency in lymphocyte function originating from Stim1 truncation in SHR‐A3 combines with hypertension to create end organ disease and may do so as a result of antibody formation.
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spelling pubmed-73355822020-07-08 Stim1 Polymorphism Disrupts Immune Signaling and Creates Renal Injury in Hypertension Dhande, Isha S. Zhu, Yaming Kneedler, Sterling C. Joshi, Aniket S. Hicks, M. John Wenderfer, Scott E. Braun, Michael C. Doris, Peter A. J Am Heart Assoc Original Research BACKGROUND: Spontaneously hypertensive rats of the stroke‐prone line (SHR‐A3) develop hypertensive renal disease as a result of naturally occurring genetic variation. Our prior work identified a single‐nucleotide polymorphism unique to SHR‐A3 that results in truncation of the carboxy terminus of STIM1. The SHR‐B2 line, which is also hypertensive but resists hypertensive renal injury, expresses the wild‐type STIM1. STIM1 plays a central role in lymphocyte calcium signaling that directs immune effector responses. Here we show that major defects in lymphocyte function affecting calcium signaling, nuclear factor of activated T cells activation, cytokine production, proliferation, apoptosis, and regulatory T‐cell development are present in SHR‐A3 and attributable to STIM1. METHODS AND RESULTS: To assess the role of Stim1 variation in susceptibility to hypertensive renal injury, we created a Stim1 congenic line, SHR‐A3(Stim1‐B2), and STIM1 function was rescued in SHR‐A3. We found that Stim1 gene rescue restores disturbed lymphocyte function in SHR‐A3. Hypertensive renal injury was compared in SHR‐A3 and the SHR‐A3(Stim1‐B2) congenic line. Histologically assessed renal injury was markedly reduced in SHR‐A3(Stim1‐B2), as were renal injury biomarker levels measured in urine. Stim1 deficiency has been linked to the emergence of antibody‐mediated autoimmunity. Renal glomerular immunoglobulin deposition was greater in SHR‐A3 than SHR‐B2 and was reduced by Stim1 congenic substitution. Serum anti–double‐stranded DNA antibody titers in SHR‐A3 were elevated compared with SHR‐B2 and were reduced in SHR‐A3(Stim1‐B2). CONCLUSIONS: Stim1 deficiency in lymphocyte function originating from Stim1 truncation in SHR‐A3 combines with hypertension to create end organ disease and may do so as a result of antibody formation. John Wiley and Sons Inc. 2020-02-20 /pmc/articles/PMC7335582/ /pubmed/32075490 http://dx.doi.org/10.1161/JAHA.119.014142 Text en © 2020 The Authors. Published on behalf of the American Heart Association, Inc., by Wiley. This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc-nd/4.0/ License, which permits use and distribution in any medium, provided the original work is properly cited, the use is non‐commercial and no modifications or adaptations are made.
spellingShingle Original Research
Dhande, Isha S.
Zhu, Yaming
Kneedler, Sterling C.
Joshi, Aniket S.
Hicks, M. John
Wenderfer, Scott E.
Braun, Michael C.
Doris, Peter A.
Stim1 Polymorphism Disrupts Immune Signaling and Creates Renal Injury in Hypertension
title Stim1 Polymorphism Disrupts Immune Signaling and Creates Renal Injury in Hypertension
title_full Stim1 Polymorphism Disrupts Immune Signaling and Creates Renal Injury in Hypertension
title_fullStr Stim1 Polymorphism Disrupts Immune Signaling and Creates Renal Injury in Hypertension
title_full_unstemmed Stim1 Polymorphism Disrupts Immune Signaling and Creates Renal Injury in Hypertension
title_short Stim1 Polymorphism Disrupts Immune Signaling and Creates Renal Injury in Hypertension
title_sort stim1 polymorphism disrupts immune signaling and creates renal injury in hypertension
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7335582/
https://www.ncbi.nlm.nih.gov/pubmed/32075490
http://dx.doi.org/10.1161/JAHA.119.014142
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