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Topic: Signaling

Seminar
4 seminars
Seminar · Neuroscience

Astrocytes: From Metabolism to Cognition

Juan P. Bolanos · Professor of Biochemistry and Molecular Biology, University of Salamanca

Fri, Oct 3, 2025 · 11:30 UTC

Different brain cell types exhibit distinct metabolic signatures that link energy economy to cellular function. Astrocytes and neurons, for instance, diverge dramatically in their reliance on glycolysis versus oxidative phosphorylation, underscoring that metabolic fuel efficiency is not uniform across cell types. A key factor shaping this divergence is the structural organization of the mitochondrial respiratory chain into supercomplexes. Specifically, complexes I (CI) and III (CIII) form a CI–CIII supercomplex, but the degree of this assembly varies by cell type. In neurons, CI is predominant

Seminar · Biophysics

Magic numbers in protein phase transitions

Ned Wingreen · Princeton

Fri, Feb 26, 2021 · 14:00 UTC

Biologists have recently come to appreciate that eukaryotic cells are home to a multiplicity of non-membrane bound compartments, many of which form and dissolve as needed for the cell to function. These dynamical “condensates” enable many central cellular functions – from ribosome assembly, to RNA regulation and storage, to signaling and metabolism. While it is clear that these compartments represent a type of separated phase, what controls their formation, how specific biological components are included or excluded, and how these structures influence physiological and biochemical processes re

Seminar · Cell Biology

“Cell Surface Topography: The Role of Protein Size at Cell-Cell Interfaces”

Dan Fletcher · University of California, Berkeley

Tue, Sep 22, 2020 · 05:45 UTC

Membrane interfaces formed at junctions between cells are often associated with characteristic patterns of membrane protein organization, such as in epithelial tissues and between cells of the immune system. While this organization can be influenced by receptor clustering, lipid domain formation, and cytoskeletal dynamics, this talk will describe how cell surface molecular height can directly contribute to the spatial arrangement of membrane proteins and downstream signaling. Using a new optical method for characterizing molecular height, together with experiments using giant vesicles in vitro

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