Thylakoid Membrane Organization

Thylakoid membrane organization describes how photosynthetic membranes are arranged within chloroplasts and cyanobacteria to coordinate light capture and energy conversion. The membranes form flattened sacs that create internal compartments, with photosystem II enriched in stacked grana regions and photosystem I and ATP synthase concentrated mainly in unstacked stroma lamellae; this spatial separation helps direct electron flow and proton movement across the membrane. Organization of these protein complexes supports the light-dependent reactions of photosynthesis, driving ATP and NADPH production for carbon fixation. Studying thylakoid architecture clarifies how plants regulate photosynthetic efficiency and respond to changing light conditions.

Thylakoid Membrane Organization - Related Videos

Research

JoVE Journal - Biology

Studying the Supramolecular Organization of Photosynthetic Membranes within Freeze-fractured Leaf Tissues by Cryo-scanning Electron Microscopy

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Cited by 19 •

2016

Here we describe a procedure for studying freeze-fractured plant tissues. High-pressure frozen leaf samples are freeze-fractured and double-layer coated, yielding well preserved frozen-hydrated samples that are imaged using the cryo-scanning electron microscope at high magnifications with minimal beam damage.

Analysis of Thylakoid Membrane Protein Complexes by Blue Native Gel Electrophoresis

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Cited by 15 •

2018

A protocol for the elucidation of plant thylakoid protein complex organization and composition with blue native polyacrylamide gel electrophoresis (BN-PAGE) and 2D-SDS-PAGE is described. The protocol is optimized for Arabidopsis thaliana, but can be used for other plant species with minor modifications.

Education

JoVE Core - Cell Biology

Protein Transport to the Thylakoids

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2023

Thylakoids are membrane-bound sac-like structures within the chloroplast that serve as sites for photosynthesis. Thylakoid lumen contains many electron transport proteins and is enclosed by a thylakoid membrane rich in the light-harvesting complex. Proteins targeted to the thylakoids are transported as precursors and are sorted by the general TOC/TIC import pathway. Once the precursor reaches the stroma, stromal processing peptidases remove their transit signal and expose thylakoid signal...

Organic Structure-directing Agent-free Synthesis for *BEA-type Zeolite Membrane

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Cited by 2 •

2020

A *BEA seed crystal was loaded on a porous α-Al2O3 support by the dip-coating method, and hydrothermally grown without using an organic structure-directing agent. A *BEA-type zeolite membrane having very few defects was successfully prepared by the secondary growth method.

Electrophoretic Crystallization of Ultrathin High-performance Metal-organic Framework Membranes

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Cited by 8 •

2018

A simple, reproducible, and versatile approach for the synthesis of intergrown, polycrystalline metal-organic framework membranes on a wide range of unmodified porous and non-porous supports is presented.

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