3-DIMENSIONAL STRUCTURE OF THE HUMAN PLASMIN ALPHA(2)-MACROGLOBULIN COMPLEX

Citation
Sj. Kolodziej et al., 3-DIMENSIONAL STRUCTURE OF THE HUMAN PLASMIN ALPHA(2)-MACROGLOBULIN COMPLEX, Journal of structural biology (Print), 123(2), 1998, pp. 124-133
Citations number
31
Categorie Soggetti
Biophysics,Biology,"Cell Biology
ISSN journal
10478477
Volume
123
Issue
2
Year of publication
1998
Pages
124 - 133
Database
ISI
SICI code
1047-8477(1998)123:2<124:3SOTHP>2.0.ZU;2-7
Abstract
The three-dimensional reconstructions of the human plasmin alpha(2)-ma croglobulin binary complex were computed from electron microscopy imag es of stain and frozen-hydrated specimens. The structures show excelle nt agreement and reveal a molecule with approximate dimensions of 170 (length) x 140 (width) x 140 Angstrom (depth). The asymmetric plasmin structure imparts significant asymmetry to the plasmin alpha(2)-macrog lobulin complex not seen in the structures resulting from the reaction of alpha(2)-macroglobulin with methylamine or chymotrypsin. The struc ture shows, when combined with other studies, that the C-terminal cata lytic domain of the rodshaped plasmin molecule is entrapped inside of the alpha(2)-macroglobulin cavity, whereas its N-terminal kringle doma ins protrude outside one end between the two arm-like features of the transformed alpha(2)-macroglobulin structure. This arrangement ensures that the catalytic site of plasmin is prevented from degrading plasma proteins. The internalized C-terminal portion of the plasmin structur e resides primarily on the major axis of alpha(2)-macroglobulin, sugge sting that after the initial cleavage of the two bait domains and the thiol esters, the rod-shaped plasmin molecule enters the alpha(2)-macr oglobulin cavity through the large openings afforded by the half-trans formed structure. This mode of entrapment requires the untwisting and the separation of the two strands that constitute the alpha(2)-macrogl obulin structure. (C) 1998 Academic Press.