Glomerular deposition of mannose-binding lectin (MBL) indicates a novel mechanism of complement activation in IgA nephropathy

被引:158
|
作者
Endo, M [1 ]
Ohi, H [1 ]
Ohsawa, I [1 ]
Fujita, T [1 ]
Matsushita, M [1 ]
Fujita, T [1 ]
机构
[1] Fukushima Med Coll, Dept Biochem, Fukushima, Japan
关键词
complement; IgA nephropathy; mannose-binding lectin; mannose-binding lectin associated serine protease;
D O I
10.1093/ndt/13.8.1984
中图分类号
R3 [基础医学]; R4 [临床医学];
学科分类号
1001 ; 1002 ; 100602 ;
摘要
Background. IgA nephropathy (IgA-N) is considered the most common glomerular disease in the world and leads to renal failure in a substantial number of patients. Although many studies have looked at the pathogenesis of the disease, many points need to be clarified, including the mechanism of complement activation. Recent studies have shown that mannose-binding lectin (MBL or mannose binding protein, MBP) initiates activation of the complement cascade (lectin pathway) utilizing two types of MBP-associated serine protease, namely MASP-1 and MASP-2. The present study was undertaken to elucidate whether the lectin pathway was involved in the pathogenic mechanism of IgA-N. Methods. Forty-five renal biopsy cases with IgA-N, 35 cases with other forms of glomerulonephritis (GN), and normal kidney tissues were collected and an immunohistochemical study was performed using monoclonal antibodies against MBL and MASP-1. Furthermore, clinicopathological and serological features were also analysed in the patients with IgA-N. Results. Glomerular deposition of MEL, which was accompanied by MASP-1, was detected in 11 of 45 (24.4%) cases with IgA-N, while it was detected in only one case with other forms of GN. The deposited MBL/MASP-1 was observed to associate with C3b/C3c and C5b-9 but not with IgG, IgM, Clq, C4c, or properdin. Compared with MBL/MASP-1 negative cases with IgA-N, the positive cases with IgA-N were young and the renal biopsies had been performed at an early stage of the disease. No significant correlation was found between glomerular deposition of MBL/MASP-1 and proteinuria, haematuria, creatinine clearance, and serum levels of IgA, C3, or C4 at the time of renal biopsy. There were also no significant differences between MBL/MASP-1 positive cases and negative cases in the plasma levels of circulating immune complexes or soluble C5b-9. Conclusion. The lectin pathway of complement activation, which is initiated by the MBL/MASPs complex, evidently contributes to the development of glomerular injury in a significant number of cases with IgA-N. In addition, these findings will add insight to the pathogenesis of IgA-N, including its relation to infection, since MBL plays a crucial role in the host defense against various pathogens.
引用
收藏
页码:1984 / 1990
页数:7
相关论文
共 50 条
  • [31] Evaluation of ethnic differences in mannose-binding lectin (MBL) level or MBL genotype.
    Buchbinder, Aby
    Basile, Thomas
    Ding, Cliff
    Hester, Jeff
    Yu, Jing
    Eckhardt, Thomas
    Conover, Charles
    Horak, Ivan
    BLOOD, 2006, 108 (11) : 41B - 42B
  • [32] Deficient mannose-binding lectin-mediated complement activation despite mannose-binding lectin-sufficient genotypes in an outbreak of Legionella pneumophila pneumonia
    Herpers, Bjorn L.
    Yzerman, Ed P. F.
    de Jong, Ben A. W.
    Bruin, Jacob P.
    Lettinga, Kamilla D.
    Kuipers, Saskia
    Den Boer, Jeroen W.
    van Hannen, Erik J.
    Rijkers, Ger T.
    van Velzen-Blad, Heleen
    de Jongh, Bartelt M.
    HUMAN IMMUNOLOGY, 2009, 70 (02) : 125 - 129
  • [33] Mannose-binding lectin complement pathway plays a key role in complement activation by Paracoccidioides brasiliensis
    Toledo, Renan G.
    Da Silva, Wilmar D.
    Calich, Vera L. G.
    Kipnis, Thereza L.
    MOLECULAR IMMUNOLOGY, 2010, 48 (1-3) : 26 - 36
  • [34] A Novel and Pivotal Role of the Mannose-Binding Lectin (MBL) Pathway of Complement Cascade (ComC) Activation in Triggering Mobilization of Hematopoietic Stem/Progenitor Cells (HSPCs)
    Adamiak, Mateusz
    Abdel-Latif, Ahmed
    Ratajczak, Janina
    Ratajczak, Mariusz Z.
    BLOOD, 2015, 126 (23)
  • [35] Purification, characterization and cDNA sequencing of porcine mannose-binding lectin (MBL).
    Agah, A
    Young, K
    Stahl, GL
    FASEB JOURNAL, 1999, 13 (04): : A284 - A284
  • [36] Low mannose-binding lectin (MBL) levels in neonates with pneumonia and sepsis
    Frakking, F. N. J.
    Brouwer, N.
    van Eijkelenburg, N. K. A.
    Merkus, M. P.
    Kuijpers, T. W.
    Offringa, M.
    Dolman, K. M.
    CLINICAL AND EXPERIMENTAL IMMUNOLOGY, 2007, 150 (02): : 255 - 262
  • [37] Mannose-binding lectin (MBL) in plasma from adults with untreated asthma
    Johannessen, L.
    Lovik, M.
    Steinshamn, S.
    Nilsen, A.
    ALLERGY, 2008, 63 : 579 - 579
  • [38] Mannose-binding lectin complement pathway plays a key role in complement activation by Paracoccidioides brasiliensis
    Toledo, Renan G.
    da Silva, Wilmar D.
    Calich, Vera L. G.
    Kipnis, Thereza L.
    MOLECULAR IMMUNOLOGY, 2009, 46 (14) : 2847 - 2847
  • [39] Mannose-binding lectin (MBL) in adult patients with inflammatory bowel disease
    Bak-Romaniszyn, Leokadia
    Swierzko, Anna S.
    Sokolowska, Anna
    Durko, Lukasz
    Mierzwa, Grazyna
    Szala-Pozdziej, Agnieszka
    Malecka-Panas, Ewa
    Cedzynski, Maciej
    IMMUNOBIOLOGY, 2020, 225 (01)
  • [40] Mannose-binding lectin (MBL) genetic susceptibility for Alzheimer's disease
    Nuytinck, L
    Palmer, M
    Dhaenens, CM
    Schraen-Maschke, S
    Duhamel, M
    Van Thielen, M
    Van de Casteele, T
    Johansson, A
    Delacourte, A
    Sablonniere, B
    Blennow, K
    Vanmechelen, E
    JOURNAL OF MOLECULAR DIAGNOSTICS, 2004, 6 (04): : 414 - 414