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Videos de Conceptos Relacionados

Mitosis and Cytokinesis02:03

Mitosis and Cytokinesis

281.5K
In eukaryotes, the cell division cycle is divided into distinct, coordinated cellular processes that include cell growth, DNA replication/chromosome duplication, chromosome distribution to daughter cells, and finally, cell division. The cell cycle is tightly regulated by its regulatory systems as well as extracellular signals that affect cell proliferation.
The processes of the cell cycle occur over approximately 24 hours (in typical human cells) and in two major distinguishable stages. The...
281.5K
Mitosis and Cytokinesis01:35

Mitosis and Cytokinesis

11.0K
In eukaryotes, the cell division cycle is divided into distinct, coordinated cellular processes that include cell growth, DNA replication/chromosome duplication, chromosome distribution to daughter cells, and finally, cell division. The cell cycle is tightly regulated by its regulatory systems as well as extracellular signals that affect cell proliferation.
The processes of the cell cycle occur over approximately 24 hours (in typical human cells) and in two major distinguishable stages. The...
11.0K
Membrane Asymmetry Regulating Transporters01:19

Membrane Asymmetry Regulating Transporters

7.2K
Enzymes like flippase, floppase, and scramblase transfer phospholipids from one layer to another in the membrane, thereby affecting membrane asymmetry.
Flippase
Eukaryotic flippases are type-IV P-type ATPases or P4-ATPases belonging to P-type ATPase family proteins that are membrane-bound pumps involved in the ATP-mediated transport of ions and molecules across the membrane. Flippases flip specific phospholipids from the outer to the inner leaflet of a membrane. All P4-ATPases have one...
7.2K
GTPases and their Regulation02:14

GTPases and their Regulation

9.9K
Guanine nucleotide-binding proteins (G-proteins), also known as GTPases, are a superfamily of proteins that regulate many cellular processes, such as cell signaling, vesicular transport, and the regulation of cell shape and motility. Mutation or dysfunction of these proteins can lead to disease. There are around 40,000 known G-proteins that can broadly be classified into two groups ‒  small G-proteins consisting of a single domain and large multi-domain G-proteins.
Large G-proteins,...
9.9K
Gap Junctions01:37

Gap Junctions

57.3K
Multicellular organisms employ a variety of ways for cells to communicate with each other. Gap junctions are specialized proteins that form pores between neighboring cells in animals, connecting the cytoplasm between the two, and allowing for the exchange of molecules and ions. They are found in a wide range of invertebrate and vertebrate species, mediate numerous functions including cell differentiation and development, and are associated with numerous human diseases, including cardiac and...
57.3K
Gap Junctions01:27

Gap Junctions

9.8K
The cytoplasm of adjacent animal cells can exchange small molecules, ions, and secondary messengers via the communication channels which form the gap junctions. These junctions comprise a few hundred to thousands of molecular channels, each made of two halves, called the connexon hemichannel. A connexon is a hexamer of six transmembrane connexin proteins, which assemble radially, thus forming a pore or channel in the center. One connexon hemichannel docks with a corresponding connexon on the...
9.8K

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Persistence without turnover: the RhoG G12E mutant highlights the role of nucleotide cycling in RhoG signaling.

The Biochemical journal·2026
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Mapping bidirectional allosteric communication in Arf GTPases.

Biophysical journal·2026
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Putting a lid on it: The N-terminal helix of Arf1 inhibits switching via uniform stabilization.

Biophysical journal·2025
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Sequence Determinants of Allosteric Back-to-front Control of the Arf Nucleotide Switch.

Journal of molecular biology·2025
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A Rac-specific competitive inhibitor of guanine nucleotide binding reduces metastasis in triple-negative breast cancer.

Cell reports. Medicine·2025
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Proteorhodopsin insights into the molecular mechanism of vectorial proton transport.

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Video Experimental Relacionado

Updated: Feb 13, 2026

Visualizing Neuroblast Cytokinesis During C. elegans Embryogenesis
09:52

Visualizing Neuroblast Cytokinesis During C. elegans Embryogenesis

Published on: March 12, 2014

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El regulador de la citoquinesis RacGAP1 es un GAP específico de Rac1 en membranas

Pavlina Dubois1, Yann Ferrandez1, Clara Rey1

  • 1CNRS, Ecole Normale Superieure Paris-Saclay, Université Paris-Saclay, Gif-sur-Yvette, France.

Protein science : a publication of the Protein Society
|February 12, 2026
PubMed
Resumen

RacGAP1, un regulador clave de la división celular, requiere lípidos de membrana específicos como PS y PIP2 para su función. Este estudio confirma que RacGAP1 inactiva selectivamente la GTPasa Rac1 en membranas, crucial para la citoquinesis.

Palabras clave:
hidrólisis de GTPRac1RacGAP1Rho GTPasascitoquinesismembranainteracción proteína-membranaespecificidad

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