4.3 Review

Small Heterodimer Partner and Innate Immune Regulation

期刊

ENDOCRINOLOGY AND METABOLISM
卷 31, 期 1, 页码 17-24

出版社

KOREAN ENDOCRINE SOC
DOI: 10.3803/EnM.2016.31.1.17

关键词

SHP orphan nuclear receptor; Immunity; innate; Social control; formal; inflammation; Toll-like receptors; lnflammasomes

资金

  1. Chungnam National University
  2. National Research Foundation of Korea (NRF) grant - Korea government [NRF-2015M3C9A2054326]
  3. National Research Foundation of Korea [2015M3C9A2054326] Funding Source: Korea Institute of Science & Technology Information (KISTI), National Science & Technology Information Service (NTIS)

向作者/读者索取更多资源

The nuclear receptor superfamily consists of the steroid and non-steroid hormone receptors and the orphan nuclear receptors. Small heterodimer partner (SHP) is an orphan family nuclear receptor that plays an essential role in the regulation of glucose and cholesterol metabolism. Recent studies reported a previously unidentified role for SHP in the regulation of innate immunity and inflammation. The innate immune system has a critical function in the initial response against a variety of microbial and danger signals. Activation of the innate immune response results in the induction of inflammatory cytokines and chemokines to promote anti-microbial effects. An excessive or uncontrolled inflammatory response is potentially harmful to the host, and can cause tissue damage or pathological threat. Therefore, the innate immune response should be tightly regulated to enhance host defense while preventing unwanted immune pathologic responses. In this review, we discuss recent studies showing that SHP k involved in the negative regulation of toll-like receptor-induced and NLRP3 INACI FL LRR and PYD domains-containing protein 3)-mediated inflammatory responses in innate immune cells. Understanding the function of SHP in innate immune cells will allow us to prevent or modulate acute and chronic inflammation processes in cases where dysregulated innate immune activation results in damage to nonnal tissues.

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