Alternative complement pathway activity in cystic fibrosis.
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The reaction between endotoxic lipopolysaccharide (LPS) and the guinea pig complement system was shown to proceed by way of an intermediate complex, LPS-X, which contains at least six guinea pig serum proteins. LPS-X, like [unk] (sheep erythrocytes carrying antibody molecules and [unk] complexes), destroys the C3 molecule by cleavage. On incubation at 37 degrees C, LPS-X loses its capacity to destroy C3 at about the same rate as the decay of [unk], so that it has been assumed that LPS-X carries [unk] sites that are responsible for the destruction of C3. We have now shown that monospecific rabbit antiguinea pig C2, which effectively inhibits C3 cleavage by [unk], does not interfere with the destruction of C3 by LPS-X. Furthermore, not more than a trace of C2a(d) is released from LPS-X on incubation at 37 degrees C. These results indicate that LPS-X does not carry a significant quantity of [unk] and, hence, that its capacity to destroy C3 is due to another factor which is presumably a component of the properdin system.
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Activated Factor B, incorporated into the cobra venom factor (CVF)-dependent C3/C5 convertase, was inactivated by diisopropylfluorophosphate (DFP). Inactivation was time- and dose-dependent and was enhanced by the presence of substrate. Treatment of the zymogen of Factor B with DFP effected significant inactivation. Incorporation of [3H]diisopropylphosphate into the zymogen and into the activated form of Factor B was demonstrated after [3H]DFP treatment and subsequent electrophoresis of the proteins on polyacrylamide gels containing sodium dodecyl sulfate. Inactivation of activated C2 incorporated into the classical C5 convertase was observed on DFP treatment of the enzyme. DFP also reduced the activity of the C2 zymogen. The description of their serine proteinase nature further emphasizes the close structural and functional relationship of C2 and Factor B.
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