Protospacer Adjacent Motif

A protospacer adjacent motif (PAM) is a short DNA sequence positioned next to a CRISPR target, and it is essential for many CRISPR-Cas systems to distinguish suitable sites for recognition and cleavage. During genome defense or genome editing, a guide RNA pairs with the neighboring protospacer, while the Cas protein detects the PAM and uses it as a licensing signal before creating a targeted DNA break. PAM sequence requirements vary among Cas enzymes, influencing which genomic sites can be targeted and how precisely editing can be performed. Understanding PAMs supports guide RNA design, mutation analysis, microbial immunity studies, and development of broader or more flexible genome-editing tools.

Protospacer Adjacent Motif - Related Videos

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JoVE Journal - Biology
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Cited by 3 •

2011

A straight-forward and robust method to identify potential regulatory motifs in co-regulated genes is presented. SCOPE does not require any user parameters and returns motifs that represent excellent candidates for regulatory signals. The identification of such regulatory signals helps to understand the underlying biology.

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JoVE Journal - Immunology and Infection

Peptide-based Identification of Functional Motifs and their Binding Partners

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Techniques to dissect the mechanisms underlying the secretion of HIV-1 Nef in exosomes are described. Specific short peptides derived from Nef and protein transfection were exploited to determine the structure, function, and binding partners of Nef’s Secretion Modification Region. These procedures have general relevance in many mechanistic studies.

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JoVE Journal - Neuroscience
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Transforaminal Full-Endoscopic Lumbar Foraminotomy Under Local Anesthesia for L5/S1 Adjacent Segment Foraminal Stenosis

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Cited by 1 •

2025

This protocol provides a step-by-step guide for performing transforaminal full-endoscopic foraminotomy under local anesthesia. This motion-preserving technique is presented as a minimally invasive surgical alternative to fusion extension for treating L5/S1 foraminal stenosis in patients with adjacent segment disease.

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Cited by 6 •

2022

Influenza A virus (IAV) infection activates the caspases that cleave host and viral proteins, which, in turn, have pro- and antiviral functions. By employing inhibitors, RNA interference, site-directed mutagenesis, and western blotting and RT-qPCR techniques, caspases in infected mammalian cells that cleave host cortactin and histone deacetylases were identified.

CRISPR Interference-Based Gene Silencing: A Technique for Targeted Repression of Gene Function in Pathogenic Leptospira

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2025

This video demonstrates a CRISPR interference-based gene silencing in pathogenic Leptospira. Targeted repression of gene expression using a CRISPR/Cas system that blocks mRNA formation helps identify candidate genes for pathological and pharmacological studies.

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