Abstract

The formation and structure of the complement cytolytic intermediary complex, C5b-7, were studied with the aim of determining the interactive regions of C5, C6, and C7. The structure of human complement component C5 was elucidated by the application of limited proteolysis which generated well characterized major polypeptide fragments of this molecule. Plasmin, thrombin, and kallikrein cleave C5b with greater facility than C5. The most useful cleavage of C5b was effected by plasmin because the fragmentation pattern was similar to the processing of C3b by factors H, I, and kallikrein. Plasmin hydrolyzes peptide bonds within the alpha'-chain of C5b, resulting in a four-chain fragment, C5c (M(r) = 142,000), and a single chain fragment, C5d (M(r) = 43,000). Circular dichroism spectroscopic analyses indicated that C5d is substantially richer in alpha-helical content than is C5c (27 versus 9%). Polyclonal antibodies directed against C5c blocked the interaction of C5b-6 with C7, whereas antibodies directed against C5d inhibited the binding of C5 with C3b. Chemical cross-linking using a cleavable radioiodinated photoreactive reagent revealed that both C6 and C7 associate preferentially with the alpha'-chain of C5b. The reversible interactions of C5 with C6, C7, and major polypeptide fragments derived from these were investigated with solid phase binding assays. The results indicate that the carboxyl-terminal domains of C6 and C7, which have cysteine-rich modules homologous to those found in factors H and I, have the capacity to link specifically with C5.

Highlights

  • Humanplasminogen was purified using results indicate that -the carboxyl-terminaldomains of lysine-Sepharose [25], and plasmin was generated from plasminogen

  • Limited proteolysis by trypsin on C6 gengous tothose found in factors H and I, have thecapacity erated the intact carboxyl-terminal domain, which was isolated as to link withC5

  • C5 ispublished [13], itwas important toacquire information about other aspects of the structure of this protein.Limited proteolysis first by C5 convertasethen by plasma-derived proteases allowed the definition of several regions in the C5 molecule

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Summary

RESULTS

Instrument was calibrated with a diffraction grating and a catalase crystal [32, 33]. Inactivation and Dissociation of C5b-6-C5 and C5b-6 were incubated for 1 h a t 37 "C with various concentrations(0-2 M ) of sodium. The amount of anti-C5c antibody fraction equivalent to that of anti-C5d was corrected for the size differ- 35Kence between C5c and C5d. Using these considerations 1 eq of anti- 27K-. C5c IgG fraction was defined a t 2.0 pg, and 1eq of anti-C5d IgG was determined a t 9 pg. In these studies control assays wereincluded using an antibody preparation (180 pg) which had no specificity to. Assays for the inhibition of binding of"'I-C5 to zymosan-C3b were carried out as described

Pln Kal Thr Pln Kal Thr
Arg Gly Ile Tyr Gly Thr Ile
Wavelength fnml
Findings
DISCUSSION
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