Iniciar sesión

The transport of solutes across the cell membrane is essential for metabolic processes, like maintaining cell size and volume, generating the action potential, exchanging nutrients and gases, etc. Membrane transport can be either passive or active. It can be simple diffusion, facilitated, or mediated transport aided by transport proteins such as transporters and channels.

Transporters facilitate either an active or passive movement of solutes. They can allow a single-molecule transport down its concentration or electrochemical gradient. At the same time, some transporters can also transport two different molecules simultaneously, in the same or opposite direction. A transporter may utilize energy from ATP hydrolysis to move a solute against its concentration or electrochemical gradient. Transporters are especially involved in maintaining cell homeostasis, transcellular transport of solutes like amino acids, monosaccharides, ions, etc.

Channels form transmembrane pores that enable passive transport of solutes. Gated channels open only under specific conditions, whereas non-gated channels are always open, allowing ions to pass through them continuously down their concentration gradient. Channels serve numerous functions like signal transduction, transepithelial transport, pH regulation, etc.

Channels act faster than transporters. For example, when we touch a hot surface or pat on the back, the receptors that detect this action are cation-gated channels that open in response to these stimuli and help us react within seconds.

Clinical effect of non-functional transport proteins

Many diseases are caused due to mutations or defects in the regulation of the membrane transport proteins. Cystic fibrosis is caused due to the non-functional chloride ion transport proteins in the epithelial cells, which leads to excessive mucus build-up in the lungs. Some members of the ABC (ATP-binding cassette) family of membrane transporters contribute to cancer cells’ resistance to chemotherapy, limiting treatment efficacy. Glucose intolerance in type 2 diabetes mellitus is mainly due to the defective glucose transporters in the muscle and adipose tissues.

Tags
Membrane TransportSolutesCell MembraneMetabolic ProcessesCell SizeVolumeAction PotentialNutrientsGasesPassive TransportActive TransportSimple DiffusionFacilitated TransportMediated TransportTransport ProteinsTransportersChannelsConcentration GradientElectrochemical GradientATP HydrolysisHomeostasisTranscellular TransportAmino AcidsMonosaccharidesIonsTransmembrane PoresGated ChannelsNon gated ChannelsSignal TransductionTransepithelial Transport

Del capítulo 13:

article

Now Playing

13.1 : La importancia del transporte de membrana

El transporte de membrana y los transportadores activos

16.7K Vistas

article

13.2 : Transportadores de membrana

El transporte de membrana y los transportadores activos

9.6K Vistas

article

13.3 : Transporte facilitado

El transporte de membrana y los transportadores activos

10.3K Vistas

article

13.4 : Transporte activo primario

El transporte de membrana y los transportadores activos

9.1K Vistas

article

13.5 : Bombas impulsadas por ATP I: resumen

El transporte de membrana y los transportadores activos

7.6K Vistas

article

13.6 : Bombas impulsadas por ATP II: bombas tipo P

El transporte de membrana y los transportadores activos

4.4K Vistas

article

13.7 : Bombas impulsadas por ATP III: bombas tipo V

El transporte de membrana y los transportadores activos

3.5K Vistas

article

13.8 : Transportadores ABC: Exportadores

El transporte de membrana y los transportadores activos

4.0K Vistas

article

13.9 : Transportadores ABC: Importadores

El transporte de membrana y los transportadores activos

2.7K Vistas

article

13.10 : Transportadores de glucosa

El transporte de membrana y los transportadores activos

22.1K Vistas

article

13.11 : Transporte activo secundario

El transporte de membrana y los transportadores activos

6.5K Vistas

article

13.12 : Transporte transcelular de solutos

El transporte de membrana y los transportadores activos

3.3K Vistas

article

13.13 : Absorción de glucosa en el intestino delgado

El transporte de membrana y los transportadores activos

30.2K Vistas

article

13.14 : Regulación del pH del estómago

El transporte de membrana y los transportadores activos

5.3K Vistas

JoVE Logo

Privacidad

Condiciones de uso

Políticas

Investigación

Educación

ACERCA DE JoVE

Copyright © 2025 MyJoVE Corporation. Todos los derechos reservados