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201. Separation of Peptide Isomers with Variant Modified Sites by High-Resolution Differential Ion Mobility-Spectrometry.

202. Retention of enzyme activity with a boron-doped diamond electrode in the electro-oxidative nitration of lysozyme

203. Electron Capture Dissociation Mass Spectrometry of Metallo-Supramolecular Complexes

204. Electron Capture Dissociation Mass Spectrometry of Tyrosine Nitrated Peptides

205. Hot Electron Capture Dissociation Distinguishes Leucine from Isoleucine in a Novel Hemoglobin Variant, Hb Askew, β54(D5)Val→Ile

206. Targeted Online Liquid Chromatography Electron Capture Dissociation Mass Spectrometry for the Localization of Sites of in Vivo Phosphorylation in Human Sprouty2.

207. Determination of the activation energy for unimolecular dissociation of a non-covalent gas-phase peptide:substrate complex by infrared multiphoton dissociation fourier transform ion cyclotron resonance mass spectrometry

208. Liquid Extraction Surface Analysis (LESA) Electron-Induced Dissociation and Collision-Induced Dissociation Mass Spectrometry of Small Molecule Drug Compounds

209. Mass spectrometry imaging of SOD1 protein-metal complexes in SOD1G93A transgenic mice implicates demetalation with pathology.

210. Laser capture microdissection and native mass spectrometry for spatially-resolved analysis of intact protein assemblies in tissue.

211. High-Throughput Deconvolution of Native Protein Mass Spectrometry Imaging Data Sets for Mass Domain Analysis.

212. Tissue Washing Improves Native Ambient Mass Spectrometry Detection of Membrane Proteins Directly from Tissue.

213. Liquid Extraction Surface Analysis Mass Spectrometry Imaging of Denatured Intact Proteins.

214. Mass Spectrometry Detection and Imaging of a Non-Covalent Protein-Drug Complex in Tissue from Orally Dosed Rats.

215. Native Ambient Mass Spectrometry of an Intact Membrane Protein Assembly and Soluble Protein Assemblies Directly from Lens Tissue.

216. Native Ambient Mass Spectrometry Imaging of Ligand-Bound and Metal-Bound Proteins in Rat Brain.

218. Native Mass Spectrometry Imaging of Proteins and Protein Complexes by Nano-DESI.

219. Liquid Extraction Surface Analysis (LESA) High-Field Asymmetric Waveform Ion Mobility Spectrometry (FAIMS) Mass Spectrometry for In Situ Analysis of Intact Proteins.

220. Top-Down LESA Mass Spectrometry Protein Analysis of Gram-Positive and Gram-Negative Bacteria.

221. Subcritical Water Hydrolysis of Peptides: Amino Acid Side-Chain Modifications.

222. Separation of cis and trans Isomers of Polyproline by FAIMS Mass Spectrometry.

223. To What Extent is FAIMS Beneficial in the Analysis of Proteins?

224. Online LC-FAIMS-MS/MS for the Analysis of Phosphorylation in Proteins.

225. Native Liquid Extraction Surface Analysis Mass Spectrometry: Analysis of Noncovalent Protein Complexes Directly from Dried Substrates.

226. Probing the electron capture dissociation mass spectrometry of phosphopeptides with traveling wave ion mobility spectrometry and molecular dynamics simulations.

227. Challenges and opportunities in mass spectrometric analysis of proteins from dried blood spots.

228. Top-down and bottom-up identification of proteins by liquid extraction surface analysis mass spectrometry of healthy and diseased human liver tissue.

229. Dried blood spot proteomics: surface extraction of endogenous proteins coupled with automated sample preparation and mass spectrometry analysis.

230. Electron capture dissociation and collision induced dissociation of S-dipalmitoylated peptides.

231. Probing the complementarity of FAIMS and strong cation exchange chromatography in shotgun proteomics.

232. The radical ion chemistry of S-nitrosylated peptides.

233. Top-down proteomics and direct surface sampling of neonatal dried blood spots: diagnosis of unknown hemoglobin variants.

234. Electron induced dissociation: a mass spectrometry technique for the structural analysis of trinuclear oxo-centred carboxylate-bridged iron complexes.

235. Characterization of polyphosphoesters by Fourier transform ion cyclotron resonance mass spectrometry.

236. Activated Ion Electron Capture Dissociation (AI ECD) of proteins: synchronization of infrared and electron irradiation with ion magnetron motion.

237. Electron capture dissociation and collision-induced dissociation of metal ion (Ag(+), Cu(2+), Zn(2+), Fe(2+), and Fe(3+)) complexes of polyamidoamine (PAMAM) dendrimers.

238. Electron capture dissociation, electron detachment dissociation, and collision-induced dissociation of polyamidoamine (PAMAM) dendrimer ions with amino, amidoethanol, and sodium carboxylate surface groups.

239. The effect of phosphorylation on the electron capture dissociation of peptide ions.

240. Liquid chromatography electron capture dissociation tandem mass spectrometry (LC-ECD-MS/MS) versus liquid chromatography collision-induced dissociation tandem mass spectrometry (LC-CID-MS/MS) for the identification of proteins.

241. Investigation of the presence of b ions in electron capture dissociation mass spectra.

242. Fourier transform ion cyclotron resonance mass spectrometry for the analysis of small ubiquitin-like modifier (SUMO) modification: identification of lysines in RanBP2 and SUMO targeted for modification during the E3 autoSUMOylation reaction.

243. Data-dependent electron capture dissociation FT-ICR mass spectrometry for proteomic analyses.

244. Identification of sites of ubiquitination in proteins: a fourier transform ion cyclotron resonance mass spectrometry approach.

245. Letter: the diagnostic value of amino acid side-chain losses in electron capture dissociation of polypeptides. Comment on: "Can the (M(.)-X) region in electron capture dissociation provide reliable information on amino acid composition of polypeptides?", Eur. J. Mass Spectrom. 8, 461-469 (2002).

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