Combinatorial post-translational modifications (PTMs), which can serve as dynamic “molecular barcodes”, have been proposed to regulate distinct protein functions. However, studies of combinatorial PTMs on single protein molecules have been hindered by a lack of suitable analytical methods. Here, we describe erasable single-molecule blotting (eSiMBlot) for combinatorial PTM profiling. This assay is performed in a highly multiplexed manner and leverages the benefits of covalent protein immobilization, cyclic probing with different antibodies, and single molecule fluorescence imaging. Especially, facile and efficient covalent immobilization on a surface using Cu-free click chemistry permits multiple rounds (>10) of antibody erasing/reprobing w...
Screening of one-bead-one-compound (OBOC) libraries is a proven procedure for the identification of ...
The ability of antibodies to bind a wide variety of analytes with high specificity and high affinity...
Quantitative single molecule localization microscopy (qSMLM) is a powerful approach to study in situ...
Combinatorial post-translational modifications (PTMs), which can serve as dynamic "molecular barcode...
Post-translational modifications (PTMs) of receptor tyrosine kinases (RTKs) at the plasma membrane (...
abstract: The ability to profile proteins allows us to gain a deeper understanding of organization, ...
We report a general method to examine the recognition of post-translational modifications (PTMs) by ...
Multiplexed protein detection is critical for improving the drug and biomarker screening efficiency....
Post-translational modification (PTM) of proteins plays essential regulatory roles in a variety of p...
The smallest natural antibody fragments currently available are single-domain antibodies obtained fr...
Cancer is complex and heterogeneous. Molecular profiling can richly characterize this tumor heteroge...
Biomolecular systems exhibit many dynamic and biologically relevant properties, such as conformation...
Affinity panning of large libraries is a powerful tool to identify protein binders. However, panning...
Proteins are central players in biology. Being able to detect and quantify proteins in various circu...
Antibodies targeting protein post-translational modifications (PTMs) are an essential tool in scient...
Screening of one-bead-one-compound (OBOC) libraries is a proven procedure for the identification of ...
The ability of antibodies to bind a wide variety of analytes with high specificity and high affinity...
Quantitative single molecule localization microscopy (qSMLM) is a powerful approach to study in situ...
Combinatorial post-translational modifications (PTMs), which can serve as dynamic "molecular barcode...
Post-translational modifications (PTMs) of receptor tyrosine kinases (RTKs) at the plasma membrane (...
abstract: The ability to profile proteins allows us to gain a deeper understanding of organization, ...
We report a general method to examine the recognition of post-translational modifications (PTMs) by ...
Multiplexed protein detection is critical for improving the drug and biomarker screening efficiency....
Post-translational modification (PTM) of proteins plays essential regulatory roles in a variety of p...
The smallest natural antibody fragments currently available are single-domain antibodies obtained fr...
Cancer is complex and heterogeneous. Molecular profiling can richly characterize this tumor heteroge...
Biomolecular systems exhibit many dynamic and biologically relevant properties, such as conformation...
Affinity panning of large libraries is a powerful tool to identify protein binders. However, panning...
Proteins are central players in biology. Being able to detect and quantify proteins in various circu...
Antibodies targeting protein post-translational modifications (PTMs) are an essential tool in scient...
Screening of one-bead-one-compound (OBOC) libraries is a proven procedure for the identification of ...
The ability of antibodies to bind a wide variety of analytes with high specificity and high affinity...
Quantitative single molecule localization microscopy (qSMLM) is a powerful approach to study in situ...