Cellular Repair Machinery

Cellular repair machinery comprises the molecular systems that detect and correct damage to DNA, proteins, membranes, and other cell structures, preserving cellular function and survival. These systems act through damage sensing, targeted removal or replacement, and restoration of structure; for example, DNA repair enzymes excise damaged bases, synthesize replacement DNA, and seal remaining breaks, while membrane repair can depend on calcium-triggered vesicle fusion. In immunology and infection, repair pathways help immune cells withstand inflammatory stress and limit tissue injury caused by pathogens. Their disruption or manipulation by microbes can alter host defense, disease progression, and responses to antimicrobial or immune-based therapies.

Cellular Repair Machinery - Related Videos

Research

JoVE Journal - Bioengineering
Free Sample

The Encapsulation of Cell-free Transcription and Translation Machinery in Vesicles for the Construction of Cellular Mimics

0 Views •

Cited by 12 •

2013

Herein we describe simple methods for the preparation of vesicles, the encapsulation of transcription and translation machinery, and the monitoring of protein production. The resulting cell-free systems can be used as a starting point from which to build increasingly complex cellular mimics.

Research

JoVE Journal - Biology

Imaging Mismatch Repair and Cellular Responses to DNA Damage in Bacillus subtilis

0 Views •

Cited by 8 •

2010

A detailed protocol is described for imaging the real time formation of DNA repair complexes in Bacillus subtilis cells.

Repressing Gene Transcription by Redirecting Cellular Machinery with Chemical Epigenetic Modifiers

0 Views •

Cited by 7 •

2018

Regulation of the chromatin environment is an essential process required for proper gene expression. Here, we describe a method for controlling gene expression through the recruitment of chromatin-modifying machinery in a gene-specific and reversible manner.

Education

JoVE Core - Molecular Biology
Free Sample

Overview of DNA Repair

0 Views •

2020

In order to be passed through generations, genomic DNA must be undamaged and error-free. However, every day, DNA in a cell undergoes several thousand to a million damaging events by natural causes and external factors. Ionizing radiation such as UV rays, free radicals produced during cellular respiration, and hydrolytic damage from metabolic reactions can alter the structure of DNA. Damages caused include single-base alteration, base dimerization, chain breaks, and cross-linkage. Chemically...

Super-resolution Imaging of the Bacterial Division Machinery

0 Views •

Cited by 17 •

2013

We describe a super-resolution imaging method to probe the structural organization of the bacterial FtsZ-ring, an essential apparatus for cell division. This method is based on quantitative analyses of photoactivated localization microscopy (PALM) images and can be applied to other bacterial cytoskeletal proteins.

View All Results

FAQs

Related Topics