A proteomic study of microgravity cardiac effects: feature maps of label-free LC-MALDI data for differential expression analysis

scientific article published on August 31, 2010

A proteomic study of microgravity cardiac effects: feature maps of label-free LC-MALDI data for differential expression analysis is …
instance of (P31):
scholarly articleQ13442814

External links are
P356DOI10.1039/C0MB00065E
P953full work available at URLhttp://pubs.rsc.org/en/content/articlepdf/2010/MB/C0MB00065E
P698PubMed publication ID20820636

P50authorAldo LaganàQ42944605
P2093author name stringEnrico Capobianco
Claudia Boccardi
Lorenzo Citti
Silvia Rocchiccioli
Luciano Callipo
Enrico Congiu
P2860cites workOpenMS - an open-source software framework for mass spectrometryQ21284208
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Mapping of a second actin-tropomyosin and a second troponin C binding site within the C terminus of troponin I, and their importance in the Ca2+-dependent regulation of muscle contractionQ28249121
Mass spectrometry-based proteomics turns quantitativeQ28291379
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Comparative study of [Three] LC-MALDI workflows for the analysis of complex proteomic samplesQ33228830
Proteomic analysis of mice hippocampus in simulated microgravity environmentQ33235250
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Distinct regions of troponin I regulate Ca2+-dependent activation and Ca2+ sensitivity of the acto-S1-TM ATPase activity of the thin filamentQ73215319
Effect of microgravity on the expression of mitochondrial enzymes in rat cardiac and skeletal musclesQ74221987
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P433issue11
P407language of work or nameEnglishQ1860
P921main subjectmicrogravityQ48655
matrix-assisted laser desorption/ionizationQ736400
stainingQ2332446
P304page(s)2218-2229
P577publication date2010-08-31
P1433published inMolecular BioSystemsQ3319467
P1476titleA proteomic study of microgravity cardiac effects: feature maps of label-free LC-MALDI data for differential expression analysis
P478volume6

Reverse relations

cites work (P2860)
Q38981880The impact of microgravity-based proteomics research.
Q33962226Top-down label-free LC-MALDI analysis of the peptidome during neural progenitor cell differentiation reveals complexity in cytoskeletal protein dynamics and identifies progenitor cell markers

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