scispace - formally typeset
Open AccessJournal ArticleDOI

Site-specific C-terminal and internal loop labeling of proteins using sortase-mediated reactions

TLDR
In this paper, the authors describe the expression and purification conditions for two sortase A enzymes that have different recognition sequences and provide a protocol that allows the functionalization of any given protein at its C terminus, or, for select proteins, at an internal site.
Abstract
Methods for site-specific modification of proteins should be quantitative and versatile with respect to the nature and size of the biological or chemical targets involved. They should require minimal modification of the target, and the underlying reactions should be completed in a reasonable amount of time under physiological conditions. Sortase-mediated transpeptidation reactions meet these criteria and are compatible with other labeling methods. Here we describe the expression and purification conditions for two sortase A enzymes that have different recognition sequences. We also provide a protocol that allows the functionalization of any given protein at its C terminus, or, for select proteins, at an internal site. The target protein is engineered with a sortase-recognition motif (LPXTG) at the place where modification is desired. Upon recognition, sortase cleaves the protein between the threonine and glycine residues, facilitating the attachment of an exogenously added oligoglycine peptide modified with the functional group of choice (e.g., fluorophore, biotin, protein or lipid). Expression and purification of sortase takes ∼3 d, and sortase-mediated reactions take only a few minutes, but reaction times can be extended to increase yields.

read more

Content maybe subject to copyright    Report

Citations
More filters
Posted ContentDOI

Single Cell Analysis of Regions of Interest (SCARI) using a novel photoswitchable tag

TL;DR: A photoswitch-based technology that allows the isolation and in-depth analysis of live cells from regions of interest in complex ex vivo systems, including human tissues and the efficient labeling and photoswitching of cells in live primary human tumor tissue is developed.
Posted ContentDOI

Membrane-mediated dimerization potentiates PIP5K lipid kinase activity

TL;DR: In this paper, the authors describe how PIP5K activity is regulated by cooperative binding to PI(4,5)P2 lipids and membrane-mediated dimerization of the kinase domain.
Journal ArticleDOI

Bioconjugation Strategies for Connecting Proteins to DNA-Linkers for Single-Molecule Force-Based Experiments.

TL;DR: A general overview of the currently existing non-covalent and covalent bioconjugation strategies to site-specifically conjugate DNA-linkers to the protein of interest can be found in this article.
Patent

Methods, conjugates and systems

TL;DR: In this paper, the authors present methods for detecting and/or quantifying one or more biomarker(s) in a biological sample, as well as conjugates and systems for use in that method.
References
More filters
Journal ArticleDOI

HaloTag: A Novel Protein Labeling Technology for Cell Imaging and Protein Analysis

TL;DR: The utility of this modular protein tagging system for cellular imaging and protein immobilization is demonstrated by analyzing multiple molecular processes associated with NF-kappaB-mediated cellular physiology, including imaging of subcellular protein translocation and capture of protein--protein and protein--DNA complexes.
Journal ArticleDOI

A general method for the covalent labeling of fusion proteins with small molecules in vivo

TL;DR: A general method for the covalent labeling of fusion proteins in vivo that complements existing methods for noncovalentlabeling of proteins and that may open up new ways of studying proteins in living cells is described.
Journal ArticleDOI

Staphylococcus aureus Sortase, an Enzyme that Anchors Surface Proteins to the Cell Wall

TL;DR: The protein specified by srtA, sortase, may be a useful target for the development of new antimicrobial drugs.
Journal ArticleDOI

An Engineered Protein Tag for Multiprotein Labeling in Living Cells

TL;DR: The generation of an AGT-based tag is reported, named CLIP-tag, which reacts specifically with O2-benzylcytosine derivatives, which is derived from the human DNA repair protein O6-alkylguanine-DNA alkyltransferase (AGT).
Related Papers (5)