• 제목/요약/키워드: complement pathway

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A Novel Complement Fixation Pathway Initiated by SIGN-R1 Interacting with C1q in Innate Immunity

  • Kang, Young-Sun
    • 한국미생물학회:학술대회논문집
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    • 한국미생물학회 2008년도 International Meeting of the Microbiological Society of Korea
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    • pp.23-25
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    • 2008
  • Serum complement proteins comprise an important system that is responsible for several innate and adaptive immune defence mechanisms. There were three well described pathways known to lead to the generation of a C3 convertase, which catalyses the proteolysis of complement component C3, and leads to the formation of C3 opsonins (C3b, iC3b and C3d) that fix to bacteria. A pivotal step in the complement pathway is the assembly of a C3 convertase, which digests the C3 complement component to form microbial-binding C3 fragments recognized by leukocytes. The spleen clears microorganisms from the blood. Individuals lacking this organ are more susceptible to Streptococcus pneumoniae. Innate resistance to S. pneumoniae has previously been shown to involve complement components C3 and C4, however this resistance has only a partial requirement for mediators of these three pathways, such as immunoglobulin, factor B and mannose-binding lectin. Therefore it was likely that spleen and complement system provide resistance against blood-borne S. pneumoniae infection through unknown mechanism. To better understand the mechanisms involved, we studied Specific intracellular adhesion molecule-grabbing nonintegrin (SIGN)-R1. SIGN-R1, is a C-type lectin that is expressed at high levels by spleen marginal-zone macrophages and lymph-node macrophages. SIGN-R1 has previously been shown to be the main receptor for bacterial dextrans, as well as for the capsular pneumococcal polysaccharide (CPS) of S. pneumoniae. We examined the specific role of this receptor in the activation of complement. Using a monoclonal antibody that selectively downregulates SIGN-R1 expression in vivo, we show that in response to S. pneumoniae or CPS, SIGN-R1 mediates the immediate proteolysis of C3 and fixation of C3 opsonins to S. pneumoniae or to marginal-zone macrophages that had taken up CPS. These data indicate that SIGN-R1 is largely responsible for the rapid C3 convertase formation induced by S. pneumoniae in the spleen of mice. Also, we found that SIGN-R1 directly binds C1q and that C3 fixation by SIGN-R1 requires C1q and C4 but not factor B or immunoglobulin. Traditionally C3 convertase can be formed by the classical C1q- and immunoglobulin-dependent pathway, the alternative factor-B-dependent pathway and the soluble mannose-binding lectin pathway. Furthermore Conditional SIGN-R1 knockout mice developed deficits in C3 catabolism when given S. pneumoniae or its capsular polysaccharide intravenously. There were marked reductions in proteolysis of serum C3, deposition of C3 on organisms within SIGN-$R1^+$ spleen macrophages, and formation of C3 ligands. The transmembrane lectin SIGN-R1 therefore contributes to innate resistance by an unusual C3 activation pathway. We propose that in the SIGN-R1 mediated complement activation pathway, after binding to polysaccharide, SIGN-R1 captures C1q. SIGN-R1 can then, in association with several other complement proteins including C4, lead to the formation of a C3 convertase and fixation of C3. Therefore, this new pathway for C3 fixation by SIGN-R1, which is unusual as it is a classical C1q-dependent pathway that does not require immuno globulin, contributes to innate immune resistance to certain encapsulated microorganisms.

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Anti-complement Activity of Phenolic Compounds from the Stem Bark of Magnolia obovata

  • Min, Byung-Sun
    • Natural Product Sciences
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    • 제14권3호
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    • pp.196-201
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    • 2008
  • Five neolignans (1 - 4, 8), two sesquiterpene-lignans (5 - 6), and two phenylpropanoids (7, 9) were isolated from the stem bark of Magnolia obovata Thunberg (Magnoliaceae) by repeated column chromatography. The structures of isolated compounds were identified as 4-methoxyhonokiol (1), obovatol (2), magnolol (3), honokiol (4), eudeshonokiol B (5), eudesobovatol B (6), coumaric acid (7), magnaldehyde B (8), and ${\rho}-coumaric$ acid (9) on the basis of spectroscopic analysis including 2D-NMR and MS data. Compounds 1 - 9 were evaluated for their anti-complement activities against the classical pathway of the complement system. Of them, compound 8 showed significant anti-complement activity on the classical pathway with $IC_{50}$ value of 102.7 ${\mu}M$, whereas compounds 1 - 7 and 9 were inactive. This result indicated that an aldehyde group in the neolignan is important for the anti-complement activity against the classical pathway.

Inflammasome-Dependent Peroxiredoxin 2 Secretion Induces the Classical Complement Pathway Activation

  • Cheol Ho Park;Hyun Sook Lee;Man Sup Kwak;Jeon-Soo Shin
    • IMMUNE NETWORK
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    • 제21권5호
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    • pp.36.1-36.16
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    • 2021
  • Peroxiredoxins (Prxs) are ubiquitously expressed peroxidases that reduce hydrogen peroxide or alkyl peroxide production in cells. Prxs are released from cells in response to various stress conditions, and they function as damage-associated molecular pattern molecules. However, the secretory mechanism of Prxs and their roles have not been elucidated. Thus, we aimed to determine whether inflammasome activation is a secretory mechanism of Prxs and subsequently identify the effect of the secreted Prxs on activation of the classical complement pathway. Using J774A.1, a murine macrophage cell line, we demonstrated that NLRP3 inflammasome activation induces Prx1, Prx2, Prx5, and Prx6 secretion in a caspase-1 dependent manner. Using HEK293T cells with a transfection system, we revealed that the release of Prx1 and Prx2 relies on gasdermin-D (GSDMD)-mediated secretion. Next, we confirmed the binding of both Prx1 and Prx2 to C1q; however, only Prx2 could induce the C1q-mediated classical complement pathway activation. Collectively, our results suggest that inflammasome activation is a secretory mechanism of Prxs and that GSDMD is a mediator of their secretion. Moreover, secreted Prx1 and Prx2 bind with C1q, but only Prx2 mediates the classical complement pathway activation.

Atypical Hemolytic Uremic Syndrome in a 13-year-old Lao Girl: A Case Report

  • Kedsatha, Philavanh;Cheong, Hae Il;Choi, Yong
    • Childhood Kidney Diseases
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    • 제23권1호
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    • pp.43-47
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    • 2019
  • Atypical hemolytic uremic syndrome (aHUS), a rare form of thrombotic microangiopathy, is distinguished from the typical form by the absence of a preceding verotoxin-producing Escherichia coli infection. Notably, aHUS occurs in association with genetic or acquired disorders causing dysregulation of the alternative complement pathway. Patients with aHUS may show the presence of anti-complement factor H (CFH) autoantibodies. This acquired form of aHUS (antiCFH-aHUS) primarily affects children aged 9-13 years. We report a case of a 13-year-old Lao girl with clinical features of aHUS (most likely anti-CFH-aHUS). The initial presentation of the patient met the classical clinical triad of thrombotic microangiopathy (microangiopathic hemolytic anemia, thrombocytopenia, and acute kidney injury) without preceding diarrheal illness. Low serum levels of complement 3 and normal levels of complement 4 indicated abnormal activation of the alternative complement pathway. Plasma infusion and high-dose corticosteroid therapy resulted in improvement of the renal function and hematological profile, although the patient subsequently died of infectious complications. This is the first case report that describes aHUS (possibly anti-CFH-aHUS) in Laos.

Genetic Association of the Porcine C9 Complement Component with Hemolytic Complement Activity

  • Khoa, D.V.A.;Wimmers, K.
    • Asian-Australasian Journal of Animal Sciences
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    • 제28권9호
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    • pp.1354-1361
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    • 2015
  • The complement system is a part of the natural immune regulation mechanism against invading pathogens. Complement activation from three different pathways (classical, lectin, and alternative) leads to the formation of C5-convertase, an enzyme for cleavage of C5 into C5a and C5b, followed by C6, C7, C8, and C9 in membrane attack complex. The C9 is the last complement component of the terminal lytic pathway, which plays an important role in lysis of the target cells depending on its self-polymerization to form transmembrane channels. To address the association of C9 with traits related to disease resistance, the complete porcine C9 cDNA was comparatively sequenced to detect single nucleotide polymorphisms (SNPs) in pigs of the breeds Hampshire (HS), Duroc (DU), Berlin miniature pig (BMP), German Landrace (LR), Pietrain (PIE), and Muong Khuong (Vietnamese potbelly pig). Genotyping was performed in 417 $F_2$ animals of a resource population (DUMI: $DU{\times}BMP$) that were vaccinated with Mycoplasma hyopneumoniae, Aujeszky diseases virus and porcine respiratory and reproductive syndrome virus at 6, 14 and 16 weeks of age, respectively. Two SNPs were detected within the third exon. One of them has an amino acid substitution. The European porcine breeds (LR and PIE) show higher allele frequency of these SNPs than Vietnamese porcine breed (MK). Association of the substitution SNP with hemolytic complement activity indicated statistically significant differences between genotypes in the classical pathway but not in the alternative pathway. The interactions between eight time points of measurement of complement activity before and after vaccinations and genotypes were significantly different. The difference in hemolytic complement activity in the both pathways depends on genotype, kind of vaccine, age and the interaction to the other complement components. These results promote the porcine C9 (pC9) as a candidate gene to improve general animal health in the future.

Anti-complement Activity of Triterpenoids from the Whole Plant of Patrinia saniculaefolia

  • An, Ren-Bo;Na, Min-Kyun;Min, Byung-Sun;Lee, Hyeong-Kyu;Bae, Ki-Hwan
    • Natural Product Sciences
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    • 제14권4호
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    • pp.249-253
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    • 2008
  • Two oleanane-type triterpenes (1, 2) and their glycosides (4-6), and one ursane-type triterpene (3) have been isolated from a methanolic extract of Patrinia saniculaefolia Hemsley (Valerianaceae) through repeated silica gel and reversed-phase C-18 column chromatography. Their chemical structures were determined as oleanolic acid (1), oleanonic acid (2), 23-hydroxyursolic acid (3), 3-O-${\alpha}$-L-arabinopyranosyl-oleanolic acid (4), 3-O-${\beta}$-D-glucopyranosyl-oleanolic acid (5), and oleanolic acid 3-O-[${\alpha}$-D-xylopyranosyl-($1{\rightarrow}3$)-${\beta}$-D-glucuronopyranoside-6-O-butyl-ester] (6) on the basis of their MS, $^1H$-, and $^{13}C$-NMR spectral data. All compounds were isolated from the whole plant of the P. saniculaefolia for the first time. These compounds were examined for their anti-complement activity against the classical pathway of the complement system. Among them, compounds 1 - 3 exhibited anti-complement activity with $IC_{50}$ values of 470.1, 212.2, and 121.0 ${\mu}M$, respectively, whereas compounds 4 - 6 were inactive. These results suggest that the carbonyl or hydroxy group at C-3 in the oleananeand/or ursane-triterpenes are important for the anti-complement activity against the classical pathway.

Characterization of Two Glucans Activating an Alternative Complement Pathway from the Fruiting Bodies of Mushroom Pleurotus ostreatus

  • Kweon, Mee-Hyang;Lim, Wang-Jin;Yang, Han-Chul;Sung, Ha-Chin
    • Journal of Microbiology and Biotechnology
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    • 제10권2호
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    • pp.267-271
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    • 2000
  • Abstract Two glucans (PONGa and PONGb) differing in their anomeric and glycosidic linkage structures were isolated from the water-insoluble materials (PON) of Pleurotus ostreatus basidiocarps, which activated the complement system and were almost soley composed of D-glucose. The isolatIon was achieved by repeated precipitations with ethanol and adsorption on concanavalin A (Con A) of paN suspension in thymol/NaCL Based on methylation analysis. IR, GLC-MS, $^1H,{\;}and{\;}^{13}C-NMR$ spectroscopies, PONGa was found to be a branched a-glucan composed of ${\alpha}-linked$ D-glucopyranose residues and ${\alpha}-linked$ units with 6-branching points, whereas PONGb was a linear ${\beta}-1,3-glucan$ composed mainly of ${\beta}-1,3-linked$ D-glucopyranose residues. The PONGb particles reacted more potently than the PONGa particles as C3 activator in alternative complement hemolysis and crossed-immunoelectrophoresis using anti-human C3, thereby suggesting that the complement activating components of PON were ${\beta}-(13)-glucans rather$ than ${\alpha}-glucan$ components.onents.

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C1qa deficiency in mice increases susceptibility to mouse hepatitis virus A59 infection

  • Kim, Han-Woong;Seo, Sun-Min;Kim, Jun-Young;Lee, Jae Hoon;Lee, Han-Woong;Choi, Yang-Kyu
    • Journal of Veterinary Science
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    • 제22권3호
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    • pp.36.1-36.12
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    • 2021
  • Background: Mouse hepatitis virus (MHV) A59 is a highly infectious pathogen and starts in the respiratory tract and progresses to systemic infection in laboratory mice. The complement system is an important part of the host immune response to viral infection. It is not clear the role of the classical complement pathway in MHV infection. Objectives: The purpose of this study was to determine the importance of the classical pathway in coronavirus pathogenesis by comparing C1qa KO mice and wild-type mice. Methods: We generated a C1qa KO mouse using CRISPR/Cas9 technology and compared the susceptibility to MHV A59 infection between C1qa KO and wild-type mice. Histopathological and immunohistochemical changes, viral loads, and chemokine expressions in both mice were measured. Results: MHV A59-infected C1qa KO mice showed severe histopathological changes, such as hepatocellular necrosis and interstitial pneumonia, compared to MHV A59-infected wild-type mice. Virus copy numbers in the olfactory bulb, liver, and lungs of C1qa KO mice were significantly higher than those of wild-type mice. The increase in viral copy numbers in C1qa KO mice was consistent with the histopathologic changes in organs. These results indicate that C1qa deficiency enhances susceptibility to MHV A59 systemic infection in mice. In addition, this enhanced susceptibility effect is associated with dramatic elevations in spleen IFN-γ, MIP-1 α, and MCP-1 in C1qa KO mice. Conclusions: These data suggest that C1qa deficiency enhances susceptibility to MHV A59 systemic infection, and activation of the classical complement pathway may be important for protecting the host against MHV A59 infection.

천연유래의 항보체 활성물질 선발을 위한 미량탐색법 (Micro-screening Method for the Anticomplement Substances from Natural Resources)

  • 오세량;정근영;이형규
    • Applied Biological Chemistry
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    • 제39권2호
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    • pp.147-152
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    • 1996
  • 천연으로부터 보체 저해활성 물질을 선발할 목적으로 용혈성 보체측정법(hemolytic complement assay, $CH_{50}$)을 이용한 미량 탐색법을 확립하였다. 보체결합 반응은 microplate에서 수행하였으며, 표준 용혈(50% hemolysis)을 설정하기 위한 최적조건은 classical pathway (CP)의 경우 양 적혈구 농도를 $5.0{\times}10^8\;cells/ml$로 하였을때 hemolysin 희석농도 $1/75{\sim}1/100$ 및 보체 희석농도 $1/80{\sim}1/120$이었으며, alternative pathway (AP)의 경우는 토끼 적혈구 농도 $4.0{\times}10^8\;cells/ml$에서 보체 희석농도 l/5, EGTA 4mM 및 $Mg^{2+}\;4{\sim}8mM$ 이었다. 비수용성 화합물의 검정에는 dimethyl sulfoxide를 1% 수준이 되도록 시료의 농도를 조절하여 첨가하였다. 본 실험 조건에서 3종의 phenylpropanoid는 모두 농도에 비례하여 항보체 활성을 나타내었는데, 그중 rosmarinic acid의 항보체 활성은 CP의 경우 $0.063{\sim}0.5mM$에서 $5.4{\pm}3.6%{\sim}95.8{\pm}0.2%$, AP의 경우 $0.063{\sim}1\;mM$에서 $35.1{\pm}0.9%{\sim}95.6{\pm}1.1%$으로 측정되었다.

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체외순환이 보체활성화화 백혈구의 폐내 정체에 미치는 영향에 관한 연구 (A Study on Effect to Complement Activation and Pulmonary Leukostasis During Cardiopulmonary bypass: Comparison of Bubble Oxygenator and Membrane Oxygenator)

  • 김양원;최석철;조광현
    • Journal of Chest Surgery
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    • 제28권7호
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    • pp.649-657
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    • 1995
  • From December 1993 to April 1994, to investigate complement activation and pulmonary leukostasis, thirty adult patients were studied during cardiopulmonary bypass[CPB for cardiac surgery in Department of Cardiovascular & Thoracic Surgery, Pusan Paik Hospital, Inje University. Total patients were divided into group I and II according to the purpose of study ; Group I was 15 patients undergoing CPB with bubble oxygenator, Group II was 15 patients undergoing CPB with membrane oxygenator. The results of study were summarized as follows.1. The decrease of C3 and C4 levels were observed within few minutes of beginning of CPB in all patients[P<0.05 , and this decrease was proved to be due to complement activation, not by the influence of hemodilution.2. In the correlation between the change of C3 and C4, group I showed linear correlation each other suggesting complement activation occurred through the classical pathway, group II showed a correlation at only partial sampling times suggesting complement activation via both classical and alternative pathway, however there was no significant statistical difference at the change of C3 and C4 concentrations in two groups[P>0.05 .3. After switching to partial CPB, a few difference between right atrial and left atrial WBC count was observed, but statistically not significant and median cell count difference between group I and II was not significant, too [P>0.05 . With the above result, we concluded that CPB itself contributes to the activation of complement system, but bubble oxygenator does not activate always complement system more than membrane oxygenator.

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