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M Mölgg

Publications and source records attributed to M Mölgg.

3 recordsLinked to original sources

Polymorphism and deficiency of human factor H-related proteins p39 and p37.

We described previously cDNA clones representing a novel factor H-related 1.4 kilobase mRNA. This mRNA species codes for a doublet of serum proteins of M(r) 39,000 and 37,000 (p39/p37). The respective recombinant proteins of the three clones H-69, pFH1.4a, and pFH1.4b differ in the expression of the epitope recognized by the monoclonal antibody (mAb) 3D11. This probably reflects the difference of three amino acid residues of the deduced protein sequence. Here we report evidence for corresponding alterations in the native proteins p39/p37 in human sera. Employing mAb 3D11 and a polyclonal factor H-specific antiserum we detected three different patterns in western blot analyses of human sera which we provisionally termed FH1.4p+m+, FH1.4p+m-, and FH1.4p-m-. In the first pattern, p39/p37 were recognized by both antibodies, while in the second pattern the two proteins reacted only with the polyclonal antiserum. Both antibodies failed to detect p39/p37 in the third pattern. These phenotypes are found in the healthy population with frequencies of 0.556, 0.40, and 0.044, respectively. The frequencies of the alleles FH1.4*p+m+, FH1.4*p+m-, and FH1.4*p-m- were estimated to be 0.33, 0.46, and 0.21, respectively, assuming the gene distribution to be in Hardy-Weinberg equilibrium. Studies of 98 members from 27 families revealed an autosomal Mendelian inheritance. Southern blot data support our assumption of a polymorphism of the factor H-related proteins p39 and p37.

Blood Proteins↗

Generation of recombinant, carbohydrate-free intercellular adhesion molecule-1 (ICAM-1) and ICAM-1 fragments in Escherichia coli and mapping of epitopes recognized by anti-ICAM-1 monoclonal antibodies.

Intercellular adhesion molecule-1 (ICAM-1) has been shown to interact with the integrin leukocyte function associated antigen-1 (LFA-1) in a variety of cell-cell adhesion phenomena. Furthermore, it serves as a receptor for the majority of the Rhinoviruses and for Plasmodium falciparum-infected human erythrocytes. We generated recombinant, carbohydrate-free ICAM-1 and several ICAM-1 fragments by expression in Escherichia coli using the fusion protein expression system pUEX1-3. In Western blot and dot blot analyses we tested mAbs (7F7, 8B9, P3.58-BA3, -BA11, -BA14, -BA19, -BA21, -BA23, -BA24, -BA26, CL203.4 and 84H10) and a polyclonal antiserum directed against native ICAM-1 for their reactivity with these constructs. We were able to localize the binding site for the mAbs P3.58-BA3, -BA11, -BA14, -BA19, -BA21, -BA23, -BA24 and -BA26 at domain 5, whereas the mAbs 7F7, 8B9, CL203.4 and 84H10 did not recognize the recombinant, carbohydrate-free ICAM-1. Our findings suggest the presence of an immunodominant epitope on domain 5 of ICAM-1.

Animals↗

Human complement factor H: molecular cloning and cDNA expression reveals variability in the factor H-related mRNA species of 1.4 kb.

Previously, we have shown that three different mRNA species of 4.3 kb, 1.8 kb and 1.4 kb, related to human complement factor H, are constitutively expressed in the human liver. Probing with our cDNA clone H-46 which represents 920 bp of the 3' end of the 4.3 kb mRNA of factor H on human liver RNA, we always detected the 4.3 kb and the additional, abundantly expressed mRNA species of 1.4 kb in length, indicating that the 1.4 kb transcript is highly homologous to the 3' end of the classical factor H mRNA of 4.3 kb. Using H-46 as a probe, several cDNA clones were isolated from a liver cDNA library and sequenced. The open reading frame of the novel mRNA species encodes a peptide consisting of five internal short consensus repeat motifs (SCR), identifying the translational product to be a member of the SCR family. Sequence comparison with cDNA clones derived from liver RNA of a different donor provided evidence for variability in the factor H related proteins encoded by the 1.4 kb mRNA species. Interestingly, this variability was found to be restricted to the three carboxyterminal SCR domains. Expression data indicate that our variant is not recognized by the monoclonal antibody 3D11.

Amino Acid Sequence↗