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S E Bozas

Publications and source records attributed to S E Bozas.

6 recordsLinked to original sources

Characterisation of a novel Kunitz-type molecule from the trematode Fasciola hepatica.

A low molecular mass monomeric protein termed Fh-KTM (Fasciola hepatica Kunitz-type molecule) was isolated from the trematode Fasciola hepatica. Fh-KTM is a single polypeptide of 58 amino acids and a Mr of 6751. The complete amino acid sequence of Fh-KTM was determined and revealed significant similarity to the Kunitz-type (BPTI) family of proteinase inhibitors. Several polymorphisms were observed suggesting that more than one Fh-KTM molecule may be expressed by this parasite. Modified proline residues were shown to occur at all four positions in this protein as 3-hydroxy derivatives. This is the first report of 3-hydroxyproline residues in a Kunitz-type molecule. Indirect immunofluorescence and immunogold labelling revealed that Fh-KTM is an abundant molecule within the parasite localised to the gut, the parenchymal tissue and the tegument of adult F. hepatica. Serine protease inhibition assays revealed that Fh-KTM exhibited little or no inhibition against chymotrypsin, kallikrein, urokinase or key serine proteases of the blood coagulation pathways. However, Fh-KTM was able to inhibit trypsin even though the P1 reactive amino acid of Fh-KTM was a leucine residue.

Amino Acid Sequence↗

Several vascular complement inhibitors are present on human sperm.

We have previously reported that the complement inhibitor SP-40,40 is present in human seminal plasma. We also speculated that other inhibitors of the vascular complement system may be present within semen for the purpose of providing protection for sperm against complement within the male and/or female genital tract. In this study, we examined human seminal plasma and spermatozoa for the presence of several major complement regulatory proteins. We detected the presence of decay-accelerating factor (DAF) and CD59 and have confirmed the presence of Membrane Cofactor Protein (MCP) and SP-40,40 on human sperm. As an approach to the possible functional significance of these inhibitors on sperm membranes, the presence of two key complement components, C3 and C9, in seminal plasma was used as a criterion for an active complement system. We failed to detect C9 in seminal plasma and showed that its concentration was less than 5% of the level detected in blood plasma. C3 was also undetectable in seminal plasma; as assessed by Western transfer, its level was less than 0.3% of that in blood plasma. The low level or indeed the absence of key components of the complement system in seminal plasma--together with the finding that human sperm possess an extensive array of the vascular complement inhibitors, some of known physiologic significance--strongly suggests that their role on sperm is to protect sperm from complement lysis in the female rather than the male genital tract.

Antigens, CD↗

SP-40,40, a protein involved in the control of the complement pathway, possesses a unique array of disulphide bridges.

SP-40,40 is a two-chain serum protein which acts in vitro as a potent inhibitor of the assembly of the membrane attack complex of human complement. It contains 10 cysteine residues, the numbers and locations of which are conserved in several mammalian species. Evidence is presented that all the cysteine residues are involved in interchain (alpha-beta) disulphide bonds. There are no free cysteine residues. The disulphide bond motif established in this study for SP-40,40 is unique and bears no obvious homology to those complement components whose disulphide bonds have been assigned, nor is there any homology apparent between SP-40,40 and other multi-chain proteins containing disulphide bonds.

Amino Acid Sequence↗

The apolipoprotein A-I binding protein of placenta and the SP-40,40 protein of human blood are different proteins which both bind to apolipoprotein A-I.

A complement-associated protein SP-40,40, which is a normal constituent of human blood, binds to the main apoprotein, apoA-I, of high density lipoprotein (HDL). This protein, which is identical to apolipoprotein J, was compared to another apoA-I binding protein purified from human placenta. Immunologically the two apoA-I binding proteins are different.

Amino Acid Sequence↗