T. Shimada et al., Characterization of a truncated recombinant form of human membrane type 3 matrix metalloproteinase, EUR J BIOCH, 262(3), 1999, pp. 907-914
Membrane type 3 matrix metalloproteinase (MT3-MMP), an activator for the zy
mogen of MMP-2 (proMMP-2, or progelatinase A), is known to be expressed in
human placenta, brain, lung and rat vascular smooth muscle cells, but infor
mation about its biochemical properties is limited. In the present study, w
e expressed and purified a truncated form of MT3-MMP lacking the transmembr
ane and intracytoplasmic domain (Delta MT3) and characterized the enzyme bi
ochemically. Delta MT3 digested type III collagen into characteristic 3/4-
and 1/4-fragments by cleaving the Gly781- Ile782 and Gly784-Ile 785 bonds o
f alpha 1(III) chains. Although Delta MT3 did not have such an activity aga
inst type I collagen, it attacked the Gly4-Ile5 bond of the triple helical
portion of alpha 2(I) chains, leading to removal of the crosslink containin
g N-terminal telopeptides. By quantitative analyses of the activities of De
lta MT3 and a similar deletion mutant of MT1-MMP (Delta MT1), Delta MT3 was
approximately fivefold more efficient at cleaving type III collagen. Delta
MT3 also digested cartilage proteoglycan, gelatin, fibronectin, vitronecti
n, laminin-1, alpha 1-proteinase inhibitor and alpha 2-macroglobulin into a
lmost identical fragments to those given by Delta MT1, although carboxymeth
ylated transferrin digestion by Delta MT3 generated some extra fragments. T
he activity of Delta MT3 alas inhibited by tissue inhibitor of metalloprote
inases-2 (TIMP-2) and TIMP-3 in a 1 : 1 stoichiometry, but not by TIMP-1. P
roMMP-2 was partially activated by Delta MT3 to give the intermediate form.
These results indicate that, like MT1-MMP. MT3-MMP exhibits proteolytic ac
tivities against a wide range of extracellular matrix molecules. However, d
ifferences in the proMMP-2 activation and tissue distribution suggest that
MT3-MMP and MT1-MMP play different roles in the pathophysiological digestio
n of extracellular matrix.