Subunit Compatibility Testing

Subunit compatibility testing is the evaluation of whether individual biological components can assemble into a stable, functional complex, an important step in studying molecular machines and engineered biomolecules. In a controlled assay, candidate subunits are combined under defined conditions, then assessed for physical association, correct assembly, structural stability, and retention of biological activity using methods such as binding, biochemical, or functional measurements. This approach helps identify compatible protein partners, reveal how complex formation influences activity, and distinguish productive interactions from nonspecific binding. In biology and biotechnology, the results guide studies of multiprotein complexes, synthetic systems, therapeutic design, and the development of reliable recombinant products.

Subunit Compatibility Testing - Related Videos

Research

JoVE Journal - Biochemistry

In Vitro Reassociation Assay to Measure the Formation of 80S Ribosomal Particles Using Salt-washed Ribosomal Subunits

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2025

Here, we describe a detailed protocol for the in vitro reassociation of purified, salt-washed eukaryotic ribosomal subunits for the analysis of 80S particle formation. This method is illustrated by analyzing ribosomal subunits isolated from a wild-type strain of Saccharomyces cerevisiae and a mutant strain deficient in the ribosomal protein eL24.

Research

JoVE Journal - Immunology and Infection
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Multi-target Parallel Processing Approach for Gene-to-structure Determination of the Influenza Polymerase PB2 Subunit

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Cited by 3 •

2013

Structure-based drug design plays an important role in drug development. Pursuing multiple targets in parallel greatly increases the chance of success for lead discovery. The following article highlights how the Seattle Structural Genomics Center for Infectious Disease utilizes a multi-target approach for gene-to-structure determination of the PB2 influenza A subunit.

A High-throughput Compatible Assay to Evaluate Drug Efficacy against Macrophage Passaged Mycobacterium tuberculosis

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Cited by 1 •

2017

New models and assays that would improve the early drug development process for next-generation anti-tuberculosis drugs are highly desirable. Here, we describe a quick, inexpensive, and BSL-2 compatible assay to evaluate drug efficacy against Mycobacterium tuberculosis that can be easily adapted for high-throughput screening.

Education

JoVE Science Education - Basic Biology

Chemical Storage: Categories, Hazards And Compatibilities

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2023

Source: Robert M. Rioux & Taslima A. Zaman, Pennsylvania State University, University Park, PA While the use of various chemicals in experimental research is essential, it is also important to safely store and maintain them as a part of the Environmental, Health and Safety (EHS) program. The properties of chemicals and their reactivity vary broadly and if chemicals are not managed, stored, and labeled properly, they can have harmful or even destructive consequences such as toxic fume...

Determination of Self-(In)compatibility and Inter-(In)compatibility Relationships in Citrus Using Manual Pollination, Microscopy, and S-Genotype Analyses

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2023

This protocol provides a rapid method for determining pollen compatibility and incompatibility in citrus cultivars.

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