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Ponniah, M.

Publications and source records attributed to Ponniah, M..

2 recordsLinked to original sources

MCT4 and CD147 co-localize with MMP14 in invadopodia and autolysosomes and collectively stimulate breast cancer cell invasion by increasing extracellular matrix degradation

The lactate-proton cotransporter MCT4 and its chaperone CD147 are upregulated in breast cancers, correlating with decreased patient survival. Here, we test the hypothesis that MCT4 and CD147 favor breast cancer invasion through interdependent effects on extracellular matrix (ECM) degradation. MCT4 and CD147 expression and membrane localization were strongly reciprocally interdependent in MDA-MB-231 invasive breast cancer cells. Knockdown (KD) and overexpression (OE) of MCT4 and/or CD174 in- and decreased, respectively, migration, invasion, and fluorescent gelatin degradation. OE of both proteins increased gelatin degradation and appearance of the matrix metalloprotease (MMP)-generated collagen-I cleavage product reC1M more than each protein alone, suggesting a concerted role in ECM degradation. MCT4 and CD147 co-localized strongly with invadopodia markers at the plasma membrane and with MMP14, the lysosomal marker LAMP-1, and in some cases the autophagosome marker LC3, in F-actin-decorated, large intracellular vesicles. We conclude that MCT4 and CD147 reciprocally regulate each other and support migration and invasiveness of MDA-MB-231 breast cancer cells in an interdependent manner. Mechanistically, this involves the MCT4-CD147-dependent stimulation of ECM degradation and specifically of MMP-mediated collagen-I degradation. We suggest that the MCT4-CD147 complex is co-delivered to invadopodia with MMP14.

cancer biology↗

Dynamic subcellular localization of sodium-bicarbonate cotransporter NBCn1/SLC4A7 to plasma membrane, centrosomes, spindle, and primary cilia

Finely tuned regulation of transport protein localization is vital for epithelial function. Sodium-bicarbonate co-transporter NBCn1 (SLC4A7) is a key contributor to epithelial pH homeostasis, yet the regulation of its subcellular localization is not understood. Here, we show that a predicted N-terminal {beta}-sheet and short C-terminal -helical motif are essential for NBCn1 plasma membrane localization in epithelial cells. This localization was abolished by cell-cell contact disruption, and co-immunoprecipitation (co-IP) and proximity ligation (PLA) revealed NBCn1 interaction with E-cadherin and DLG1, linking the transporter to adherens junctions and the Scribble complex. NBCn1 also interacted with RhoA and localized to lamellipodia and filopodia in migrating cells. Finally, analysis of localization of native and GFP-tagged NBCn1, subcellular fractionation, co-IP of NBCn1 with Arl13B and CEP164, and PLA of NBCn1 and tubulin in mitotic spindles led to the surprising conclusion that NBCn1 additionally localizes to the centrosome and primary cilium in non-dividing, polarized epithelial cells, and to spindle, centrosome and midbodies during mitosis. We propose that NBCn1 traffics between lateral junctions, leading edge, and cell division machinery in Rab11 endosomes, adding new insight to the role of NBCn1 in cell cycle progression. Summary statementWe unravel molecular determinants of plasma membrane localization of the Na+,HCO3- cotransporter NBCn1 and discover that NBCn1 also localizes to centrosomes, spindle, midbody and primary cilia, likely cycling between these compartments.

cell biology↗