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Journal ArticleDOI

Networks of Interacting Proteins Contribute to Membrane Curvature Sensing

Zhiming Chen
- 30 Jan 2021 - 
- Vol. 120, Iss: 5, pp 752-753
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This article is published in Biophysical Journal.The article was published on 2021-01-30. It has received 1 citations till now. The article focuses on the topics: Membrane curvature.

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A NanoCurvS platform for quantitative and multiplex analysis of curvature-sensing proteins.

TL;DR: NanoCurvS as mentioned in this paper is a nanostructure-based platform that enables quantitative and multiplex analysis of curvature-sensitive proteins in the low curvature regime, in both negative and positive directions.
References
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Journal ArticleDOI

Mechanisms of clathrin-mediated endocytosis.

TL;DR: Studies in recent years have provided several important insights into how endocytic vesicles are built, starting from initiation, cargo loading and the mechanisms governing membrane bending to membrane scission and the release of the vesicle into the cytoplasm.
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Molecular model for a complete clathrin lattice from electron cryomicroscopy

TL;DR: Analysis of coats with distinct diameters shows an invariant pattern of contacts in the neighbourhood of each vertex, allowing assembly and uncoating to be controlled by events at a few specific sites.
Journal ArticleDOI

Regulation of Clathrin-Mediated Endocytosis.

TL;DR: This review summarizes recent findings on the regulation of CME and the evolution of this complex process and describes the role of the GTPase dynamin in this process.
Journal ArticleDOI

Membrane curvature in cell biology: An integration of molecular mechanisms

TL;DR: Examples of membrane curvature generation in animals, fungi, and plants are reviewed and lessons from how membranes are bent in yeast and mammals give hints as to the molecular mechanisms the authors expect to see used by plants and protists.