Talin-KANK1 interaction controls the recruitment of cortical microtubule stabilizing complexes to focal adhesions
ELIFE
Authors: Bouchet, Benjamin P.; Gough, Rosemarie E.; Ammon, York-Christoph; van de Willige, Dieudonnee; Post, Harm; Jacquemet, Guillaume; Altelaar, A. F. Maarten; Heck, Albert J. R.; Goult, Benjamin T.; Akhmanova, Anna
Abstract
The cross-talk between dynamic microtubules and integrin-based adhesions to the extracellular matrix plays a crucial role in cell polarity and migration. Microtubules regulate the turnover of adhesion sites, and, in turn, focal adhesions promote cortical microtubule capture and stabilization in their vicinity, but the underlying mechanism is unknown. Here, we show that cortical microtubule stabilization sites containing CLASPs, KIF21A, LL5 beta and liprins are recruited to focal adhesions by the adaptor protein KANK1, which directly interacts with the major adhesion component, talin. Structural studies showed that the conserved KN domain in KANK1 binds to the talin rod domain R7. Perturbation of this interaction, including a single point mutation in talin, which disrupts KANK1 binding but not the talin function in adhesion, abrogates the association of microtubule- stabilizing complexes with focal adhesions. We propose that the talin-KANK1 interaction links the two macromolecular assemblies that control cortical attachment of actin fibers and microtubules.
Application of Fluolid-Orange-labeled probes for DNA microarray and immunological assays
BIOTECHNOLOGY LETTERS
Authors: Zhu, Yun; Ogaeri, Takunori; Suzuki, Jun-ichiro; Dong, Sijun; Aoyagi, Tei-ichiro; Mizuki, Keiji; Takasugi, Mikako; Isobe, Shin-ichiro; Kiyama, Ryoiti
Abstract
The usefulness of Fluolid-Orange, a novel fluorescent dye, for DNA microarray and immunological assays has been examined. Fluolid-Orange-labeled probes (DNA and IgG) were stable as examined by laser-photo-bleaching and under heat and dry conditions. Statistical analyses were performed to evaluate the reproducibility of the microarray assay, while stage-specific immunostaining of marker proteins, Kank1 and calretinin, was performed for renal cancers, both giving satisfactory results. The stability of the dye should provide advantages for storing fluorescently labeled probes and re-examining the specimens later in genetic and pathological diagnostics.