The role of type 1 interferons in Gram-negative bacteria-induced coagulation

Author:

Yang Xinyu1,Cheng Xiaoye1,Tang Yiting2,Qiu Xianhui1,Wang Zhongtai1,Fu Guang1,Wu Jianfeng3,Kang Haixia4,Wang Jing4,Wang Haichao5ORCID,Chen Fangping6,Xiao Xianzhong6,Billiar Timothy7,Lu Ben1

Affiliation:

1. the 3rd xiangya hospital, changsha, China

2. Department of Physiology, School of Basic Medical Science, Central South University, Changsha, Hunan

3. State Key Laboratory of Cellular Stress Biology, Innovation Center for Cell Signaling Network, School of Life Sciences, Xiamen University, Xiamen, Fujian, China., xiamen, China

4. Shanghai Institute of Immunology, Department of Microbiology and Immunology, Shanghai Jiao Tong University School of Medicine Shanghai,200025, P.R. China, shanghai, China

5. Feinstein Institute for Medical Research, Manhasset, New York, United States

6. Central South University

7. University of Pittsburgh, Pittsburgh, Pennsylvania, United States

Abstract

Bacterial infection not only stimulates innate immune responses but also activates the coagulation cascades. Over-activation of the coagulation system in bacterial sepsis leads to disseminated intravascular coagulation (DIC), a life-threatening condition. However, the mechanisms by which bacterial infection activates the coagulation cascade are not fully understood. Here we show that type 1 interferons (IFNs), widely expressed family of cytokines that orchestrate innate antiviral and antibacterial immunity, mediate bacterial infection-induced DIC through amplifying the release of high mobility box group box 1 (HMGB1) into the blood stream. Inhibition of the expression of type 1 IFNs, disruption of their receptor IFN-α/βR or downstream effector (e.g., HMGB1) uniformly decreased Gram-negative bacteria-induced DIC. Mechanistically, extracellular HMGB1 markedly increased the pro-coagulant activity of tissue factor (TF) by promoting the externalization of phosphatidylserine (PS) to the outer cell surface, where PS assembles a complex of cofactor-proteases of the coagulation cascades. These findings not only provide novel insights into the link between innate immune responses and coagulation, but also open a new avenue for developing novel therapeutic strategies to prevent DIC in sepsis.

Publisher

American Society of Hematology

Subject

Cell Biology,Hematology,Immunology,Biochemistry

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