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Stojanovic, N.

Publications and source records attributed to Stojanovic, N..

2 recordsLinked to original sources

Regulation of reticular adhesions by KANK2 and talin2 in two melanoma cell lines

Integrins bind to extracellular matrix proteins and, upon clustering, form multimolecular integrin adhesion complexes (IACs) that connect to and regulate the cell cytoskeleton, influencing various aspects of normal and tumour cell behaviour. Alongside well-characterized nascent adhesions, focal adhesions (FAs), fibrillar adhesions (FBs) and hemidesmosomes, a new class of IACs, reticular adhesions (RAs), have been identified. RAs, initially described as flat clathrin lattices formed by integrin V{beta}5, lack association with actin and are devoid of FAs markers. The physiological role of RAs in normal and tumor cells is still incompletely understood and requires further investigation. Previously, we analysed IACs of two melanoma cell lines, MDA-MB-435S and RPMI-7951, grown under long term culture conditions, and demonstrated that both cell lines preferentially use integrin V{beta}5 for adhesion. Here we present a comprehensive analysis of RAs in these two melanoma cell lines that differ in their ability to form FBs. To determine RAs composition, we treated cells with actin polymerisation inhibitor cytochalasin D (CytoD) which disrupts FAs, allowing isolation of RAs, which were analysed by MS-based proteomics, Western blotting and immunofluorescence. Known RA-associated proteins, including the AP-2 adaptor complex, disabled homolog 2 (DAB2) and Numb were identified in both lines, along with talin2. Notably, we also detected the presence of KN motif and ankyrin repeat domains protein (KANK2) in RA isolates. Proximity ligation analysis following CytoD-induced actin disruption confirmed the proximity of KANK2 and talin2 in RAs. We then investigated the effect of talin2 or KANK2 knockdown on RAs composition. While both talin2 and KANK2 are located in RAs, neither is essential for RA formation. Talin2 knockdown led to a reduction in RA components abundance in both cell lines. In MDA-MB-435S cell line, KANK2 produced a similar effect, mirroring the functional interaction of talin2 and KANK2 in FAs. However, in RPMI-7951 cells, KANK2 knockdown had no significant effect on RA components abundance. This discrepancy likely reflects the preferential localization of KANK2 in FBs and underscores the differing roles of talin2 and KANK2 in V{beta}5-mediated FAs across the two cell lines. These findings underscore the complexity of adhesion signalling and highlight the importance of adhesion crosstalk in regulating cellular function.

cell biology↗

Localization of KANK2 to Focal or Fibrillar Adhesions Influences Migration in Melanoma Cell Lines

BackgroundIntegrins form focal adhesions (FAs) at the cell edge and fibrillar adhesions (FBs) located centrally. Talin 1 is essential to FAs, while talin2 is found in FAs and FBs. KANK (kidney ankyrin repeat-containing) family proteins regulate adhesion dynamics and are recruited to adhesions through interaction with talins. Previously, we showed in MDA-MB-435S melanoma cells that KANK2 is part of integrin V{beta}5 FAs, that its interaction with talin2 regulates actin-microtubule (MT) crosstalk and that KANK2 knockdown mimics the effect of integrin V or {beta}5 knockdown by reducing cell migration. Here, in another melanoma cell line RPMI-7951 we observed that KANK2 is part of FAs and FBs and that KANK2 knockdown increases cell migration. Therefore, we analyse integrin adhesion complexes in RPMI-7951 cells, explore the localization and role of KANK2 in FAs and FBs. MethodsKnockdown in human melanoma RPMI-7951 cells was achieved by transfection with gene-specific siRNAs. Integrin adhesion complexes were isolated and analysed by mass spectrometry. Immunofluorescence analysis, live cell imaging and the proximity ligation assays were done using confocal microscopy. Cell migration was assessed using Transwell Cell Culture Inserts. MTT assays were performed to determine cell sensitivity to paclitaxel. Data were statistically evaluated using one-way or two-way ANOVA or unpaired Students t-tests in GraphPad Software. ResultsWe demonstrate that RPMI-7951 melanoma cells use integrin V{beta}5 FAs and integrin 5{beta}1 FBs for adhesion, and that KANK2 is part of both structures. KANK2 is predominantly in proximity to talin1 at the cell edge (FAs) and in proximity to talin2 in the cell center (FBs). KANK2 in FAs functionally interacts with talin1 to maintain FAs, and with talin2 to regulate their dynamics. KANK2 is a component of FBs, and its knockdown mimics integrin 5 knockdown by increasing MT-dependent cell migration. ConclusionsOur study reveals the distinct roles of KANK2 in FAs and FBs. We show that KANK2 is a component of FBs, linking them to MTs and promoting their stabilisation. Loss of integrin 5 or KANK2 from FBs increases cell migration, a process that relies on the MT cytoskeleton. Plain English summaryCells adhere to their surroundings using specialized structures called adhesions, which are formed by different types of integrins and have different cell localisations: focal adhesions at the cell edge and fibrillar adhesions in the cell center. Talin1 is essential for focal adhesions, while talin2 is present in focal and fibrillar adhesions. KANK (kidney ankyrin repeat-containing) family proteins regulate adhesion dynamics by connecting talins to the microtubule cytoskeleton. Our study explored the different roles of KANK2 in focal or fibrillar adhesions, by focusing on its interactions with integrins and talins. We show that in RPMI-7951 cells, which form V{beta}5 focal and 5{beta}1 fibrillar adhesions, KANK2 is present in both of these adhesions. KANK2 supports V{beta}5 focal adhesion maintenance via talin1 and regulates their dynamics via talin2. KANK2 is also a component of 5{beta}1 fibrillar adhesions, and its depletion mimics integrin 5 knockdown and enhances cell migration, a process dependent on the microtubule cytoskeleton. In conclusion, our study demonstrates that KANK2 plays distinct roles in different adhesion structures, contributing to both focal and fibrillar adhesion function.

cell biology↗