Structural Assembly

Structural assembly is the biological process by which molecules, macromolecules, or cells organize into larger, functional structures, enabling life to maintain form and activity. It occurs through coordinated synthesis, molecular recognition, and interactions such as hydrogen bonding, electrostatic attraction, and hydrophobic forces, often guided by templates or cellular compartments. Structural assembly produces protein complexes, membranes, cytoskeletal networks, and tissue architecture, linking molecular organization to cellular function. Studying these processes helps researchers understand development, disease, and cellular organization, while informing approaches in biotechnology, biomaterials design, and regenerative research.

Structural Assembly - Related Videos

Research

JoVE Journal - Chemistry

Formation of Ordered Biomolecular Structures by the Self-assembly of Short Peptides

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Cited by 6 •

2013

This paper describes the formation of highly ordered peptide-based structures by the spontaneous process of self-assembly. The method utilizes commercially available peptides and common lab equipment. This technique can be applied to a large variety of peptides and may lead to the discovery of new peptide-based assemblies.

Education

JoVE Core - Cell Biology

Assembly of Complex Microtubule Structures

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2023

Complex microtubule structures are present in resting cells and in dividing cells. In resting cells, they are responsible for maintaining the cellular architecture, tracks for intracellular transport, positioning of organelles, assembly of cilia and flagella. They mediate the bipolar spindle assembly for chromosomal segregation and positioning of the cell division plate in dividing cells. The formation of microtubule complex structures depends on the cell type, cell stage, and cell function.

Research

JoVE Journal - Immunology and Infection
Free Sample

Structure of HIV-1 Capsid Assemblies by Cryo-electron Microscopy and Iterative Helical Real-space Reconstruction

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Cited by 8 •

2011

This article describes a method to obtain a three-dimensional (3D) structure of helically assembled molecules using cryo-electron microscopy. In this protocol, we use HIV-1 capsid assemblies to illustrate the detailed 3D reconstruction procedure for achieving a density map by the iterative helical real-space reconstruction method.

Visualizing Viral Structural Protein Assembly on Giant Unilamellar Vesicle Membranes

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2026

Source: Olety, B., et. al., Visualization of HIV-1 Gag Binding to Giant Unilamellar Vesicle (GUV) Membranes. J. Vis. Exp. (2016)This study demonstrates a fluorescence-based assay to observe the membrane-binding behavior of human immunodeficiency virus type-1 structural protein. Using synthetic giant unilamellar vesicles as model membranes, the assay visualizes protein recruitment and assembly, mimicking early steps of viral particle formation.

Research

JoVE Journal - Biochemistry
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Atomic Scale Structural Studies of Macromolecular Assemblies by Solid-state Nuclear Magnetic Resonance Spectroscopy

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Cited by 3 •

2017

Structures of supramolecular protein assemblies at atomic resolution are of high relevance because of their crucial roles in a variety of biological phenomena. Herein, we present a protocol to perform high-resolution structural studies on insoluble and non-crystalline macromolecular protein assemblies by magic-angle spinning solid-state nuclear magnetic resonance spectroscopy (MAS SSNMR).

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