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1.
J Neuroimmunol ; 239(1-2): 98-100, 2011 Oct 28.
Article in English | MEDLINE | ID: mdl-21911261

ABSTRACT

Role of mannose binding lectin (MBL) complement activation pathway, an arm of innate immunity in multiple sclerosis (MS) was evaluated by analyzing the expression of MBL, MBL-associated serine protease-2 (MASP-2), and functional MBL/MASP-2 mediated C4 cleavage (fMBL) in 87 plasma and cerebrospinal fluid (CSF) samples from MS patients and non-MS controls. Median fMBL and MASP-2 plasma levels were higher in MS vs. non-MS cases. These associations remained in an analysis of subtypes of MS disease. These findings suggest a potential activation of MBL complement pathway in MS that may possibly alter the risk or progression of MS disease.


Subject(s)
Complement Activation/immunology , Complement C4/metabolism , Complement Pathway, Mannose-Binding Lectin/physiology , Mannose-Binding Lectin/physiology , Multiple Sclerosis/immunology , Disease Progression , Humans , Mannose-Binding Lectin/blood , Mannose-Binding Protein-Associated Serine Proteases/biosynthesis , Mannose-Binding Protein-Associated Serine Proteases/physiology , Multiple Sclerosis/blood , Multiple Sclerosis/cerebrospinal fluid , Risk Factors
2.
J Immunol ; 182(5): 2939-47, 2009 Mar 01.
Article in English | MEDLINE | ID: mdl-19234189

ABSTRACT

Mannan-binding lectin-associated serine protease 2 (MASP-2) is an enzyme of the innate immune system. MASP-2 forms complexes with the pattern recognition molecules mannan-binding lectin (MBL), H-ficolin, L-ficolin, or M-ficolin, and is activated when one of these proteins recognizes microorganisms and subsequently cleaves complement factors C4 and C2, thus initiating the activation of the complement system. Missense polymorphisms of MASP-2 exist in different ethnic populations. To further characterize the nature of these, we have produced and characterized rMASP-2s representing the following naturally occurring polymorphisms: R99Q, D120G, P126L, H155R, 156_159dupCHNH (CHNHdup), V377A, and R439H. Only very low levels of CHNHdup were secreted from the cells, whereas quantities similar to wild-type MASP-2 were found intracellularly, indicating that this mutation results in a misfolded protein. We found that D120G and CHNHdup could not associate with MBL, whereas R99Q, P126L, H155R, V377A, R439H, and wild-type MASP-2 bound equally well to MBL. Accordingly, when D120G and CHNHdup were mixed with MBL, no activation of complement factor C4 was observed, whereas R99Q, P126L, and V377A cleaved C4 with an activity comparable to wild-type MASP-2 and H155R slightly better. In contrast, the R439H variant was deficient in this process despite its normal binding to MBL. This variant was also not able to autoactivate in the presence of MBL and mannan. We find the R439H variant is common in Sub-Saharan Africans with a gene frequency of 10%. Our results indicate that individuals with different types of MASP-2 defects may be identified through genotyping.


Subject(s)
Complement Pathway, Mannose-Binding Lectin/genetics , Mannose-Binding Lectin/metabolism , Mannose-Binding Protein-Associated Serine Proteases/genetics , Polymorphism, Single Nucleotide/immunology , Amino Acid Substitution/genetics , Amino Acid Substitution/immunology , Cell Line , Complement C4/genetics , Complement C4/metabolism , Complement Pathway, Mannose-Binding Lectin/immunology , Enzyme Activation/genetics , Enzyme Activation/immunology , Enzyme Stability/genetics , Genetic Predisposition to Disease , Genetic Variation/immunology , Genotype , Humans , Mannose-Binding Protein-Associated Serine Proteases/antagonists & inhibitors , Mannose-Binding Protein-Associated Serine Proteases/biosynthesis , Mannose-Binding Protein-Associated Serine Proteases/metabolism , Protein Binding/genetics , Protein Binding/immunology , Recombinant Proteins/antagonists & inhibitors , Recombinant Proteins/genetics , Recombinant Proteins/metabolism
3.
Article in English | MEDLINE | ID: mdl-18765903

ABSTRACT

MASP-1, a multidomain serine protease, is a component of the lectin pathway of complement. Its precise function is unknown, although it seems to enhance the complement-activating capacity of MASP-2, a related enzyme. MASP-1 has also been implicated as playing a role in blood coagulation. It is mostly found associated with mannose-binding lectin (MBL) and ficolins. Early attempts to crystallize MASP-1 failed because of the inhomogeneity of the purified material. MASP-1 was shown by acidic nondenaturing PAGE to be composed of differently charged species, which are most likely to be the products of deamidation occurring during the refolding procedure. Sequential cation-exchange and anion-exchange chromatography resulted in a homogeneous material, which was successfully crystallized. The best crystal diffracted to 2.55 A resolution and belonged to space group P2(1)2(1)2(1), with unit-cell parameters a = 68.4, b = 70.4, c = 121.4 A. The crystal structure of MASP-1 may help in understanding the function of this mysterious serine protease.


Subject(s)
Catalytic Domain/physiology , Mannose-Binding Lectin/metabolism , Mannose-Binding Protein-Associated Serine Proteases/chemistry , Mannose-Binding Protein-Associated Serine Proteases/isolation & purification , Complement Pathway, Mannose-Binding Lectin/physiology , Crystallization , Crystallography, X-Ray , Electrophoresis, Polyacrylamide Gel , Humans , Hydrogen-Ion Concentration , Mannose-Binding Protein-Associated Serine Proteases/biosynthesis , Mannose-Binding Protein-Associated Serine Proteases/genetics , Protein Folding
4.
Springer Semin Immunopathol ; 27(3): 299-319, 2005 Nov.
Article in English | MEDLINE | ID: mdl-16189649

ABSTRACT

Mannan-binding lectin (MBL)-associated serine proteases (MASPs) circulate in plasma as zymogens in complexes with MBL and with L- and H-ficolin. Upon binding of MBL or ficolin to pathogen-associated molecular patterns, the MASPs are activated. MASP-2 can now cleave C4 and C2 to generate the C3 convertase, C4bC2b. The functions of the other two MASPs, MASP-1 and MASP-3 have not been elucidated. MASP-1 can cleave C2, and with low efficiency also C3, and may serve a function through direct C3 activation. No natural substrate for MASP-3 has been identified. MBL deficiency, occurring at a frequency of about 10%, is the most common congenital immunodeficiency and is associated with susceptibility to infections and autoimmune disorders. Inherited MASP-2 deficiency has been described as the result of a mutation causing the exchange of aspartic acid with a glycine at position 105, a position in the first domain, CUB1, involved in calcium binding. This mutation abolishes the binding to MBL and ficolins, and deprives MASP-2 of functional activity. The index case suffered from recurrent severe infections and autoimmune reactions. The gene frequency of the mutation among Caucasians is 3.6%. It is not found in Chinese, who present a different mutation also associated with MASP-2 deficiency.


Subject(s)
Mannose-Binding Protein-Associated Serine Proteases/immunology , Amino Acid Sequence , Amino Acid Substitution , Base Sequence , Complement Pathway, Mannose-Binding Lectin , Dimerization , Humans , Immunologic Deficiency Syndromes/congenital , Immunologic Deficiency Syndromes/genetics , Immunologic Deficiency Syndromes/immunology , Lectins/immunology , Mannose-Binding Lectin/immunology , Mannose-Binding Protein-Associated Serine Proteases/biosynthesis , Mannose-Binding Protein-Associated Serine Proteases/chemistry , Mannose-Binding Protein-Associated Serine Proteases/genetics , Models, Molecular , Multiprotein Complexes , Mutation , Protein Structure, Quaternary , Substrate Specificity , Ficolins
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