Literature DB >> 36256626

LACTATE IMPAIRS VASCULAR PERMEABILITY BY INHIBITING HSPA12B EXPRESSION VIA GPR81-DEPENDENT SIGNALING IN SEPSIS.

Min Fan, Kun Yang, Xiaohui Wang, Xia Zhang1, Jingjing Xu1, Fei Tu1, P Spencer Gill, Tuanzhu Ha, David L Williams, Chuanfu Li.   

Abstract

ABSTRACT: Introduction: Sepsis impaired vascular integrity results in multiple organ failure. Circulating lactate level is positively correlated with sepsis-induced mortality. We investigated whether lactate plays a role in causing endothelial barrier dysfunction in sepsis.
Methods: Polymicrobial sepsis was induced in mice by cecal ligation and puncture (CLP). Lactic acid was injected i.p. (pH 6.8, 0.5 g/kg body weight) 6 h after CLP or sham surgery. To elucidate the role of heat shock protein A12B (HSPA12B), wild-type, HSPA12B-transgenic, and endothelial HSPA12B-deficient mice were subjected to CLP or sham surgery. To suppress lactate signaling, 3OBA (120 μM) was injected i.p. 3 h before surgery. Vascular permeability was evaluated with the Evans blue dye penetration assay.
Results: We found that administration of lactate elevated CLP-induced vascular permeability. Vascular endothelial cadherin (VE-cadherin), claudin 5, and zonula occluden 1 (ZO-1) play a crucial role in the maintenance of endothelial cell junction and vascular integrity. Lactate administration significantly decreased VE-cadherin, claudin 5, and ZO-1 expression in the heart of septic mice. Our in vitro data showed that lactate (10 mM) treatment disrupted VE-cadherin, claudin 5, and ZO-1 in endothelial cells. Mechanistically, we observed that lactate promoted VE-cadherin endocytosis by reducing the expression of HSPA12B. Overexpression of HSPA12B prevented lactate-induced VE-cadherin disorganization. G protein-coupled receptor 81 (GPR81) is a specific receptor for lactate. Inhibition of GPR81 with its antagonist 3OBA attenuated vascular permeability and reversed HSPA12B expression in septic mice. Conclusions: The present study demonstrated a novel role of lactate in promoting vascular permeability by decreasing VE-cadherin junctions and tight junctions in endothelial cells. The deleterious effects of lactate in vascular hyperpermeability are mediated via HSPA12B- and GPR81-dependent signaling.
Copyright © 2022 The Author(s). Published by Wolters Kluwer Health, Inc. on behalf of the Shock Society.

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Year:  2022        PMID: 36256626      PMCID: PMC9584042          DOI: 10.1097/SHK.0000000000001983

Source DB:  PubMed          Journal:  Shock        ISSN: 1073-2322            Impact factor:   3.533


  44 in total

1.  The Third International Consensus Definitions for Sepsis and Septic Shock (Sepsis-3).

Authors:  Mervyn Singer; Clifford S Deutschman; Christopher Warren Seymour; Manu Shankar-Hari; Djillali Annane; Michael Bauer; Rinaldo Bellomo; Gordon R Bernard; Jean-Daniel Chiche; Craig M Coopersmith; Richard S Hotchkiss; Mitchell M Levy; John C Marshall; Greg S Martin; Steven M Opal; Gordon D Rubenfeld; Tom van der Poll; Jean-Louis Vincent; Derek C Angus
Journal:  JAMA       Date:  2016-02-23       Impact factor: 56.272

Review 2.  Protein Interactions at Endothelial Junctions and Signaling Mechanisms Regulating Endothelial Permeability.

Authors:  Yulia A Komarova; Kevin Kruse; Dolly Mehta; Asrar B Malik
Journal:  Circ Res       Date:  2017-01-06       Impact factor: 17.367

3.  YAP/TAZ regulates sprouting angiogenesis and vascular barrier maturation.

Authors:  Jongshin Kim; Yoo Hyung Kim; Jaeryung Kim; Do Young Park; Hosung Bae; Da-Hye Lee; Kyun Hoo Kim; Seon Pyo Hong; Seung Pil Jang; Yoshiaki Kubota; Young-Guen Kwon; Dae-Sik Lim; Gou Young Koh
Journal:  J Clin Invest       Date:  2017-08-14       Impact factor: 14.808

4.  Cell surface lactate receptor GPR81 is crucial for cancer cell survival.

Authors:  Christina L Roland; Thiruvengadam Arumugam; Defeng Deng; Shi He Liu; Bincy Philip; Sobeyda Gomez; William R Burns; Vijaya Ramachandran; Huamin Wang; Zobeida Cruz-Monserrate; Craig D Logsdon
Journal:  Cancer Res       Date:  2014-06-13       Impact factor: 12.701

5.  A novel endothelial-specific heat shock protein HspA12B is required in both zebrafish development and endothelial functions in vitro.

Authors:  Guang Hu; Jian Tang; Bo Zhang; Yanfeng Lin; Jun-Ichi Hanai; Jenna Galloway; Victoria Bedell; Nathan Bahary; Zhihua Han; Ramani Ramchandran; Bernard Thisse; Christine Thisse; Leonard I Zon; Vikas P Sukhatme
Journal:  J Cell Sci       Date:  2006-09-12       Impact factor: 5.285

Review 6.  Sepsis and septic shock.

Authors:  Maurizio Cecconi; Laura Evans; Mitchell Levy; Andrew Rhodes
Journal:  Lancet       Date:  2018-06-21       Impact factor: 79.321

Review 7.  Molecular basis of endothelial dysfunction in sepsis.

Authors:  Kirsten Peters; Ronald E Unger; Joachim Brunner; C James Kirkpatrick
Journal:  Cardiovasc Res       Date:  2003-10-15       Impact factor: 10.787

8.  Novel Role of Endothelial Derived Exosomal HSPA12B in Regulating Macrophage Inflammatory Responses in Polymicrobial Sepsis.

Authors:  Fei Tu; Xiaohui Wang; Xia Zhang; Tuanzhu Ha; Yana Wang; Min Fan; Kun Yang; P Spencer Gill; Tammy R Ozment; Yuan Dai; Li Liu; David L Williams; Chuanfu Li
Journal:  Front Immunol       Date:  2020-05-07       Impact factor: 7.561

9.  Lactate released by inflammatory bone marrow neutrophils induces their mobilization via endothelial GPR81 signaling.

Authors:  Eman Khatib-Massalha; Suditi Bhattacharya; Hassan Massalha; Adi Biram; Karin Golan; Orit Kollet; Anju Kumari; Francesca Avemaria; Ekaterina Petrovich-Kopitman; Shiri Gur-Cohen; Tomer Itkin; Isabell Brandenburger; Asaf Spiegel; Ziv Shulman; Zachary Gerhart-Hines; Shalev Itzkovitz; Matthias Gunzer; Stefan Offermanns; Ronen Alon; Amiram Ariel; Tsvee Lapidot
Journal:  Nat Commun       Date:  2020-07-15       Impact factor: 14.919

10.  The molecular organization of endothelial cell to cell junctions: differential association of plakoglobin, beta-catenin, and alpha-catenin with vascular endothelial cadherin (VE-cadherin).

Authors:  M G Lampugnani; M Corada; L Caveda; F Breviario; O Ayalon; B Geiger; E Dejana
Journal:  J Cell Biol       Date:  1995-04       Impact factor: 10.539

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