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Carriers and membrane transport proteins

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Published by Academic Press in New York .
Written in English

Subjects:

  • Cell membranes.,
  • Biological transport.,
  • Membranes (Biology),
  • Proteins.,
  • Biological Transport.,
  • Cell Membrane Permeability.,
  • Proteins.

Book details:

Edition Notes

Includes bibliographical references and index.

Statementedited by Felix Bronner and Arnost Kleinzeller.
SeriesCurrent topics in membranes and transport -- v. 12.
ContributionsBronner, Felix., Kleinzeller, Arnošt.
The Physical Object
Paginationxiv, 437 p. :
Number of Pages437
ID Numbers
Open LibraryOL16120828M
ISBN 100121533123

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Search in this book series. Carriers and Membrane Transport Proteins. Edited by Felix Bronner, Arnost Kleinzeller. Vol Pages ii-xv, () Download full volume. Previous volume. Next volume. Actions for selected chapters. Select all / Deselect all. Download PDFs Export citations. ISBN: OCLC Number: Description: xiv, pages: illustrations ; 24 cm. Series Title: Current topics in membranes and transport, v Book is in Like New / near Mint Condition. Will include dust jacket if it originally came with one. Text will be unmarked and pages crisp. Satisfaction is guaranteed with every order. CHANNELS, CARRIERS, AND PUMPS: AN INTRODUCTION TO MEMBRANE TRANSPORT By Wilfred D. Stein - Hardcover **Mint Condition**. Buy Current Topics in Membranes and Transport (Carriers and Membrane Transport Proteins, Volume 12) on FREE SHIPPING on qualified orders.

Very few molecules enter or leave cells, or cross organellar membranes, unaided by proteins. Even transport of molecules, such as water and urea, that can diffuse across pure phospholipid bilayers is frequently accelerated by transport proteins. The three major classes of membrane transport proteins are depicted in Figure a. All are integral transmembrane proteins and exhibit a high degree Cited by: 1. Channels, Carriers, and Pumps: An Introduction to Membrane Transport - Kindle edition by Stein, Wilfred D.. Download it once and read it on your Kindle device, PC, phones or tablets. Use features like bookmarks, note taking and highlighting while reading Channels, Carriers, and Pumps: An Introduction to Membrane Transport.5/5(2). The development of robust bioinformatics-based methods for the prediction of membrane transport proteins and their substrate specificities is therefore an important and urgent task. This diffusion of water across a selectively permeable membrane is a special case of passive transport -Osmosis continues until the solutions are isotonic -Unbound water molecules will move from the hypotonic solution where they are abundant to the hypertonic solution where they are rarer.

Some small molecules (e.g. H2O) can cross this lipid bilayer by simple diffusion, but the majority of molecules require membrane transport proteins. In this seminar, Dr. Nieng Yan explores the different mechanisms that cells have to exchange material with its environment: vesicular transport (endocytosis and exocytosis), passive transport. Transport and Diffusion across Cell Membranes is a comprehensive treatment of the transport and diffusion of molecules and ions across cell membranes. This book shows that the same kinetic equations (with appropriate modification) can describe all the specialized membrane transport systems: the pores, the carriers, and the two classes of pumps. Passive Transport: Facilitated Transport In facilitated transport, also called facilitated diffusion, material moves across the plasma membrane with the assistance of transmembrane proteins down a concentration gradient (from high to low concentration) without the expenditure of cellular r, the substances that undergo facilitated transport would otherwise not diffuse easily Author: Bartee, Lisa, Anderson, Christine. In cellular biology, membrane transport refers to the collection of mechanisms that regulate the passage of solutes such as ions and small molecules through biological membranes, which are lipid bilayers that contain proteins embedded in them. The regulation of passage through the membrane is due to selective membrane permeability - a characteristic of biological membranes which allows them to.