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Date, S.

Publications and source records attributed to Date, S..

2 recordsLinked to original sources

An interaction between betaprime-COP and the ArfGAP, Glo3, maintains post-Golgi cargo recycling

The essential COPI vesicular coat mediates retrieval of key transmembrane proteins at the Golgi and endosomes following recruitment by the small GTPase, Arf1. ArfGAP proteins regulate COPI coats, but molecular details for COPI recognition by ArfGAP proteins remain elusive. Biochemical and biophysical data reveal how {beta}-COP propeller domains directly engage the yeast ArfGAP, Glo3, with a low micromolar binding affinity (KD ~1 {micro}M). Calorimetry data demonstrate both {beta}-COP propeller domains are required to bind Glo3 using electrostatic interactions. An acidic patch on {beta}-COP (D437/D450) interacts with Glo3 lysine residues located within the BoCCS (Binding of Coatomer, Cargo, and SNAREs) region. Targeted point mutations in either Glo3 BoCCS or {beta}-COP abrogate the interaction in vitro, and loss of the {beta}-COP/Glo3 interaction drives Ste2 mis-sorting to the vacuole and aberrant Golgi morphology in budding yeast. Together, these data suggest cells require the {beta}-COP/Glo3 interaction for cargo recycling via endosomes and the TGN, where {beta}-COP may serve as a molecular platform to coordinate binding to multiple protein partners, including Glo3, Arf1, and the COPI F-subcomplex.

cell biology↗

A centimeter-long bacterium with DNA compartmentalized in membrane-bound organelles

Cells of most bacterial species are around 2 {micro}m in length, with some of the largest specimens reaching 750 {micro}m. Using fluorescence, x-ray, and electron microscopy in conjunction with genome sequencing, we characterized Ca. Thiomargarita magnifica, a bacterium with an average cell length greater than 9,000 {micro}m that is visible to the naked eye. We found that these cells grow orders of magnitude over theoretical limits for bacterial cell size through unique biology, display unprecedented polyploidy of more than half a million copies of a very large genome, and undergo a dimorphic life cycle with asymmetric segregation of chromosomes in daughter cells. These features, along with compartmentalization of genomic material and protein synthesis in membrane-bound organelles, indicate gain of complexity in the Thiomargarita lineage, and challenge traditional concepts of bacterial cells. One Sentence SummaryCa. T. magnifica are compartmentalized centimeter-long bacteria

cell biology↗