The roles of MKP-1 in Gram-negative bacterial sepsis and colitis
The roles of MKP-1 in Gram-negative bacterial sepsis and colitis
批准号:
7929507
负责人:
Yusen Liu
金额:
$32.4万
依托单位国家:
美国
项目类别:
财政年份:
2004
资助国家:
美国
项目状态:
已结题
起止时间:
2004-05-01 至 2012-08-31
关键词:
AffectAnti-Inflammatory AgentsAnti-inflammatoryAntigen-Presenting CellsApplications GrantsBacteriaBacterial InfectionsCharacteristicsChronicColitisContainmentCrohn&aposs diseaseDataDefectDevelopmentEnterobacteriaceaeEnterocolitisEscherichia coliExhibitsFeedbackFoundationsGenesGram-Negative Bacterial InfectionsHouse miceHumanImmuneImmune responseImmune systemInfectionInfection preventionInflammationInflammatoryInflammatory Bowel DiseasesInflammatory ResponseInflammatory disease of the intestineInterleukin-10Interleukin-6IntestinesInvadedKnock-outKnockout MiceLeadLifeLigandsMAPK14 geneMAPK8 geneMesenteryMitogen-Activated Protein KinasesMolecularMusOrgan failureOrganismPathogenesisPeptidoglycanPhagocytesPhagocytosisPhenotypePhosphoric Monoester HydrolasesPlayProductionProtein phosphataseRectal ProlapseRoleSepsisSeptic ShockSerumSeveritiesShockTestingToll-like receptorsUlcerative ColitisWild Type Mouseantimicrobialbactericidebasecytokinehuman diseaseinterleukin-23killingslipoteichoic acidmicrobialmortalitymouse modelneutralizing antibodynovelnovel strategiespathogenpublic health relevanceresponsetreatment strategy
中文摘要
描述(由申请人提供):炎症反应失调在大量人类疾病的发病机制中起重要作用,包括感染性休克和炎症性肠病(IBD)。丝裂原活化的蛋白激酶磷酸酶(MKP)-1对抑制细菌感染期间的炎症反应至关重要。MKP-1作为p38和JNK的诱导负调节因子,并限制促炎细胞因子的产生。当感染toll样受体配体和细菌时,MKP-1缺陷(MKP-1-/-)小鼠比野生型小鼠表现出更强的炎症反应。由于炎症有助于微生物病原体的遏制和清除,我们推断MKP-1-/-小鼠应该能更有效地杀死入侵的病原体。令人惊讶的是,当感染大肠杆菌时,MKP-1-/-小鼠表现出比野生型小鼠更大的细菌负担,尽管炎症反应更强烈。这些数据表明,MKP-1不仅是一种重要的抗炎调节剂,而且在先天免疫机制的杀菌活性调控中也起着重要作用。除了炎症细胞因子外,MKP-1-/-小鼠还产生了更高水平的抗炎细胞因子IL-10。这使我们假设过量的IL-10产生会损害MKP-1-/-小鼠的抗菌防御。为了了解IL-10在MKP-1-/-小鼠中的作用,我们培养了缺乏IL-10和MKP-1基因的小鼠。在常规但非无病原体条件下饲养的IL-10-/-小鼠已知会发生与直肠脱垂相关的结肠炎。相反,即使在无病原体的情况下,MKP-1和IL-10的缺失也会导致严重的直肠脱垂。MKP-1/IL-10双敲除小鼠也出现眼部异常,这是一种类似IBD眼部表现的新表型。综上所述,这些数据表明MKP-1缺乏加剧了IL-10-/-小鼠的结肠炎表型。我们建议用IL-10-/- IBD小鼠模型确定MKP-1在结肠炎发病机制中的作用。我们的具体目标是确定:1)。MKP-1-/-小鼠先天免疫系统缺陷导致的杀菌活性缺陷2)是否过量的IL-10产生导致了MKP-1-/-小鼠杀菌活性的缺陷;3) MKP-1缺乏是否会加重IL-10-/-小鼠结肠炎的严重程度。拟议的研究将揭示控制感染免疫反应和预防慢性小肠结肠炎的关键调节机制,并可能导致治疗败血症和IBD的新策略。公共卫生相关性:异常免疫反应是人类疾病的主要原因,包括感染性休克和炎症性肠病。在本次拨款申请中,我们建议研究MKP-1在革兰氏阴性细菌性败血症和结肠炎中的作用。这些研究将揭示关键的免疫调节机制,并可能导致治疗败血症和炎症性肠病的新策略。
英文摘要
DESCRIPTION (provided by applicant): Dysregulation of the inflammatory response plays an important role in the pathogenesis of a plethora of human diseases, including septic shock and inflammatory bowel disease (IBD). Mitogen-activated protein kinase phosphatase (MKP)-1 is crucial for restraining the inflammatory response during bacterial infection. MKP-1 acts as an inducible negative regulator of p38 and JNK, and serves to restrict the production of pro-inflammatory cytokines. MKP-1-deficient (MKP-1-/-) mice exhibit a more robust inflammatory response than do wild-type mice when challenged with both toll-like receptor ligands and bacteria. Since inflammation facilitates the containment and clearance of microbial pathogens, we reasoned that MKP-1-/- mice should exhibit more efficient killing of invading pathogens. Surprisingly, when infected with Escherichia coli, MKP-1-/- mice exhibited substantially greater bacterial burdens than do wild-type mice in spite of a more robust inflammatory response. These data suggest that MKP-1 not only functions as a crucial anti-inflammatory regulator but also plays an important role in orchestrating the bactericidal activity of the innate immune mechanism. In addition to inflammatory cytokines, MKP-1-/- mice also produce substantially higher levels of the anti-inflammatory cytokine IL-10. This led us to hypothesize that excessive IL-10 production impairs the antimicrobial defense in MKP-1-/- mice. To understand the role of IL-10 in MKP-1-/- mice, we generated mice that lack both the IL-10 and MKP-1 genes. IL-10-/- mice housed in conventional but not pathogen-free conditions are known to develop colitis associated with rectal prolapse. Conversely, deletion of both MKP-1 and IL-10 caused severe rectal prolapse even in pathogen-free conditions. The MKP-1/IL-10 double knockout mice also developed ocular abnormalities, a novel phenotype resembling the ocular manifestation of IBD. Taken together, these data suggest that MKP-1 deficiency exacerbates the colitis phenotype of IL-10-/- mice. We propose to define the molecular mechanisms underlying the bactericidal defects of MKP-1-/- mice and to define the role of MKP-1 in the pathogenesis of colitis using the IL-10-/- mouse model of IBD. Our specific aims are to determine: 1). The defects in the innate immune system underlying the faulty bactericidal activity of MKP-1-/- mice; 2) Whether excessive IL-10 production contributes to the defects in the bactericidal activity of MKP-1-/- mice; and 3) Whether MKP-1 deficiency exacerbates the severity of colitis in IL-10-/- mice. The proposed studies will unravel critical regulatory mechanisms that govern the immune response to infection and prevent chronic enterocolitis and may lead to novel strategies for the treatment of sepsis and IBD. PUBLIC HEALTH RELEVANCE: Abnormal immune responses are a major cause of human illnesses, including septic shock and inflammatory bowel disease. In this grant application we propose to study the roles of MKP-1 in Gram-negative bacterial sepsis and colitis. These studies will uncover critical immune regulatory mechanisms, and may lead to novel strategies for the treatment of sepsis and inflammatory bowel disease.
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