4.3 Article

Opposite Roles of Furin and PC5A in N-Cadherin Processing

Journal

NEOPLASIA
Volume 14, Issue 10, Pages 880-U19

Publisher

ELSEVIER SCIENCE INC
DOI: 10.1593/neo.121250

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Funding

  1. Canadian Institutes of Health Research (CIHR) [MOP 44363]
  2. Canada Chair [216684]
  3. Strauss Foundation
  4. Goals for Lily
  5. Alex Pavanel Family
  6. Tony Boeckh
  7. Maggie De Fontes Funds for Brain Tumour Research
  8. Montreal English School Board
  9. Franco Di Giovanni, B-Strong
  10. Tony Colannino Foundations
  11. Brain Tumour Foundation of Canada
  12. RF Tomlinson Studentships
  13. Christian Geada Studentship
  14. McGill FOM Fellowship
  15. Jeanne Timmons Costello Studentship

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We recently demonstrated that lack of Furin-processing of the N-cadherin precursor (proNCAD) in highly invasive melanoma and brain tumor cells results in the cell-surface expression of a nonadhesive protein favoring cell migration and invasion in vitro. Quantitative polymerase chain reaction analysis of malignant human brain tumor cells revealed that of all proprotein convertases (PCs) only the levels of Furin and PC5A are modulated, being inversely (Furin) or directly (PC5A) correlated with brain tumor invasive capacity. Intriguingly, the N-terminal sequence following the Furin-activated NCAD site (RQKR down arrow D (W) under bar (161), mouse nomenclature) reveals a second putative PC-processing site (RIRSDR down arrow DK189) located in the first extracellular domain. Cleavage at this site would abolish the adhesive functions of NCAD because of the loss of the critical Trp(161). This was confirmed upon analysis of the fate of the endogenous prosegment of proNCAD in human malignant glioma cells expressing high levels of Furin and low levels of PC5A (U343) or high levels of PC5A and negligible Furin levels (U251). Cellular analyses revealed that Furin is the best activating convertase releasing an similar to 17-kDa prosegment, whereas PC5A is the major inactivating enzyme resulting in the secretion of an similar to 20-kDa product. Like expression of proNCAD at the cell surface, cleavage of the NCAD molecule at RIRSDR down arrow DK189 renders the U251 cancer cells less adhesive to one another and more migratory. Our work modifies the present view on posttranslational processing and surface expression of classic cadherins and clarifies how NCAD possesses a range of adhesive potentials and plays a critical role in tumor progression. Neoplasia (2012) 14, 880-892

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