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alpha 2-macroglobulin traps a proteinase in the midregion of its arms. An immunoelectron microscopic study
H Arakawa1, M Nishigai, A Ikai
1Department of Biochemistry and Biophysics, Faculty of Science, University of Tokyo, Japan.
Abstract:
alpha 2-Macroglobulin, one of the major plasma proteinase inhibitors with Mr = 720,000, is known to inhibit proteinases of all four classes through the "trap mechanism" (Barrett, A. J., and Starkey, P. M. (1973) Biochem. J. 133, 709-724), but the proteinase binding site of alpha 2-macroglobulin has not been identified precisely. We localized bound proteinase molecules on the electron microscopic images of alpha 2-macroglobulin, using anti-proteinase IgG. Serratial Mr = 56,000 proteinase produced by Serratia marcescens was chosen as the antigenic probe in this study because its affinity to specific antibodies was retained in its bound state to alpha 2-macroglobulin. Dimers of alpha 2-macroglobulin/Mr = 56,000 proteinase complexes cross-linked with anti-Mr = 56,000 proteinase IgG were prepared and subjected to electron microscopic observations. The electron microscopic image of alpha 2-macroglobulin complexed with Mr = 56,000 proteinase had four straight arms with an overall shape looking like the character "H." From the way anti-Mr = 56,000 proteinase IgG linked two alpha 2-macroglobulins, it was concluded that the proteinase existed in the midregion of one of the arms. This result helps us to form a more concrete view of the trap mechanism in that one of the arms of alpha 2-macroglobulin wraps the trapped proteinase and holds it isolated from high molecular weight substrates in the surrounding medium.
Insights
Alpha 2-macroglobulin, a key plasma proteinase inhibitor, traps proteinases using a unique mechanism. Researchers precisely located bound proteinase molecules using electron microscopy, revealing the binding site within the inhibitor's structure.
Area of Science:
- Biochemistry
- Molecular Biology
- Structural Biology
Background:
- Alpha 2-macroglobulin is a major plasma proteinase inhibitor.
- It inhibits proteinases via a "trap mechanism" but the precise binding site was unknown.
Purpose of the Study:
- To precisely identify the proteinase binding site on alpha 2-macroglobulin.
- To visualize the interaction between alpha 2-macroglobulin and a bound proteinase.
Main Methods:
- Electron microscopy was used to observe alpha 2-macroglobulin/proteinase complexes.
- Anti-proteinase IgG was employed to localize bound proteinase molecules.
- Serratial Mr = 56,000 proteinase was used as an antigenic probe.
Main Results:
- Complexes of alpha 2-macroglobulin with Serratial Mr = 56,000 proteinase were visualized.
- The electron microscopic image of the complex showed an "H" shape.
- The proteinase was localized to the midregion of one of the inhibitor's arms.
Conclusions:
- The study precisely identified the proteinase binding site on alpha 2-macroglobulin.
- Findings support the "trap mechanism" model, where an arm of alpha 2-macroglobulin engulfs the proteinase.
- This structural insight clarifies how alpha 2-macroglobulin isolates trapped proteinases.