Tissue factor pathway inhibitor 2 is a potent kallikrein-related protease 12 inhibitor

Author:

Lavergne Marion12ORCID,Guillon-Munos Audrey23,Lenga Ma Bonda Woodys12,Attucci Sylvie14,Kryza Thomas25,Barascu Aurélia26,Moreau Thierry17,Petit-Courty Agnès12,Sizaret Damien8,Courty Yves2,Iochmann Sophie129,Reverdiau Pascale129

Affiliation:

1. Université de Tours , F-37032 Tours , France

2. INSERM, Centre d’Etude des Pathologies Respiratoires (CEPR) , UMR 1100, 10 boulevard Tonnellé, F-37032 Tours , France

3. Groupe IMT, Bio3 Institute , 15 rue du Plat D’Etain, F-37020 Tours Cedex 1 , France

4. INSERM, Imagerie et Cerveau (iBrain) , UMR 1253, F-37000 Tours , France

5. Mater Research Institute, The University of Queensland , Woollongabba Brisbane , QLD , Australia

6. UMR 8226-CNRS/UPMC, Institut de Biologie Physico-chimique, Sorbonne Université , 13 rue Pierre et Marie Curie, F-75005 Paris , France

7. INRA, UMR INRA 0083 - Biologie des Oiseaux et Aviculture (BOA) , F-37380 Nouzilly , France

8. Département d’Anatomie et Cytologie Pathologiques , Hôpital Trousseau , CHRU de Tours, F-37044 Tours , France

9. Institut Universitaire de Technologie , F-37082 Tours , France

Abstract

Abstract The protease activities are tightly regulated by inhibitors and dysregulation contribute to pathological processes such as cancer and inflammatory disorders. Tissue factor pathway inhibitor 2 (TFPI-2) is a serine proteases inhibitor, that mainly inhibits plasmin. This protease activated matrix metalloproteases (MMPs) and degraded extracellular matrix. Other serine proteases are implicated in these mechanisms like kallikreins (KLKs). In this study, we identified for the first time that TFPI-2 is a potent inhibitor of KLK5 and 12. Computer modeling showed that the first Kunitz domain of TFPI-2 could interact with residues of KLK12 near the catalytic triad. Furthermore, like plasmin, KLK12 was able to activate proMMP-1 and -3, with no effect on proMMP-9. Thus, the inhibition of KLK12 by TFPI-2 greatly reduced the cascade activation of these MMPs and the cleavage of cysteine-rich 61, a matrix signaling protein. Moreover, when TFPI-2 bound to extracellular matrix, its classical localisation, the KLK12 inhibition was retained. Finally, TFPI-2 was downregulated in human non-small-cell lung tumour tissue as compared with non-affected lung tissue. These data suggest that TFPI-2 is a potent inhibitor of KLK12 and could regulate matrix remodeling and cancer progression mediated by KLK12.

Publisher

Walter de Gruyter GmbH

Subject

Clinical Biochemistry,Molecular Biology,Biochemistry

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