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Simplified method for purification of mouse beta 1H.

A simple three-step method was described for purification of murine beta 1H, one of the essential regulatory proteins of complement system. The method consists of heparin-Sepharose affinity chromatography; gel filtration on a Sepharose 6B column, and DNA-cellulose affinity chromatography. By this method over 10 mg of beta 1H can be purified by more than 200-fold from 100-ml of EDTA serum of various strains. Overall yield of beta 1H was about 45%. The purified beta 1H was homogeneous as judged by SDS-polyacrylamide gel electrophoresis and immunoelectrophoresis. The purified mouse beta 1H showed physicochemical properties very similar to those described for human beta 1H: mouse beta 1H is a beta-globulin consisting of a single polypeptide chain of molecular weight of 160,000. Purified mouse beta 1H retained its functional activity as the essential cofactor for the cleavage of fluid-phase human C3b by the human C3b inactivator. Immunization of rabbits with the purified mouse beta 1H resulted in the production of the potent and monospecific antibody.

Animals↗

Complement components of the innate immune system in health and disease in the CNS.

The innate immune system and notably the complement (C) system play important roles in host defense to recognise and kill deleterious invaders or toxic entities, but activation at inappropriate sites or to an excessive degree can cause severe tissue damage. C has been implicated as a factor in the exacerbation and propagation of tissue injury in numerous diseases including neurodegenerative disorders. In this article, we review the evidence indicating that brain cells can synthesise a full lytic C system and also express specific C inhibitors (to protect from C activation and C lysis) and C receptors (involved in cell activation, chemotaxis and phagocytosis). We also summarise the mechanisms involved in the antibody-independent activation of the classical pathway of C in Alzheimer's disease, Huntington's disease and Pick's disease. Although the primary role of C activation on a target cell is to induce cell lysis (particularly of neurons), we present evidence indicating that C (C3a, C5a, sublytic level of C5b-9) may also be involved in pro- as well as anti-inflammatory activities. Moreover, we discuss evidence suggesting that local C activation may contribute to tissue remodelling activities during repair in the CNS.

Central Nervous System↗

Evidence for the involvement of the Ss protein of the mouse in the hemolytic complement system.

A significant within-strain correlation has been demonstrated between the levels of Ss and hemolytic complement (C) activity in two Ss-high strains. Mouse serum specifically depleted of Ss by absorption with F(ab')2 fragments of anti-Ss had negligible C activity. In control experiments, Ss-specific antigen-antibody complexes formed with F(ab')2 fragments did not fix rabbit C, and bovine serum albumin-specific antigen-antibody complexes formed with F(ab')2 fragments did not fix mouse C. Therefore the removal of C activity by anti-Ss [F(ab')2] was apparently not due to C fixation. These results suggest that the Ss protein is a necessary component of the C system.

Animals↗

[The complement system].

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Complement Fixation Tests↗