AbstractDynamic proteins and multi-protein complexes govern most biological processes. Cross-linking/mass spectrometry (CLMS) is increasingly successful in providing residue-resolution data on static proteinaceous structures. Here we investigate the technical feasibility of recording dynamic processes using isotope-labelling for quantitation. We cross-linked human serum albumin (HSA) with the readily available cross-linker BS3-d0/4 in different heavy/light ratios. We found two limitations. First, isotope labelling reduced the number of identified cross-links. This is in line with similar findings when identifying proteins. Second, standard quantitative proteomics software was not suitable for work with cross-linking. To ameliorate this we w...
Cross-linking mass spectrometry (CLMS) provides distance constraints to study the structure of prote...
Structural characterization of protein complexes is essential for the understanding of their functio...
Recent development of mass spectrometer cleavable protein cross-linkers and algorithms for their spe...
AbstractDynamic proteins and multi-protein complexes govern most biological processes. Cross-linking...
The conceptually simple step from cross-linking/mass spectrometry (CLMS) to quantitative cross-linki...
An emerging approach for studying protein-protein interaction in complexes is the combination of che...
Quantitative measurement of chemically cross-linked proteins is crucial to reveal dynamic informatio...
Chemical cross-linking mass spectrometry (XL-MS) provides protein structural information by identify...
We describe an integrated workflow that robustly identifies cross-links from endogenous protein comp...
In recent years, cross-linking mass spectrometry (XL-MS) has made enormous strides as a technology f...
AbstractAfter more than a decade of method development, cross-linking in combination with mass spect...
The understanding of complex biological systems is still hampered by limited knowledge of biological...
Chemical cross-linking mass spectrometry (XL-MS) provides protein structural information by identify...
The number of publications in the field of chemical cross-linking combined with mass spectrometry (X...
Cross-linking mass spectrometry (CLMS) provides distance constraints to study the structure of prote...
Structural characterization of protein complexes is essential for the understanding of their functio...
Recent development of mass spectrometer cleavable protein cross-linkers and algorithms for their spe...
AbstractDynamic proteins and multi-protein complexes govern most biological processes. Cross-linking...
The conceptually simple step from cross-linking/mass spectrometry (CLMS) to quantitative cross-linki...
An emerging approach for studying protein-protein interaction in complexes is the combination of che...
Quantitative measurement of chemically cross-linked proteins is crucial to reveal dynamic informatio...
Chemical cross-linking mass spectrometry (XL-MS) provides protein structural information by identify...
We describe an integrated workflow that robustly identifies cross-links from endogenous protein comp...
In recent years, cross-linking mass spectrometry (XL-MS) has made enormous strides as a technology f...
AbstractAfter more than a decade of method development, cross-linking in combination with mass spect...
The understanding of complex biological systems is still hampered by limited knowledge of biological...
Chemical cross-linking mass spectrometry (XL-MS) provides protein structural information by identify...
The number of publications in the field of chemical cross-linking combined with mass spectrometry (X...
Cross-linking mass spectrometry (CLMS) provides distance constraints to study the structure of prote...
Structural characterization of protein complexes is essential for the understanding of their functio...
Recent development of mass spectrometer cleavable protein cross-linkers and algorithms for their spe...