Další formáty:
BibTeX
LaTeX
RIS
@article{1824743, author = {Kuchaříková, Hana and Dobrovolná, Pavlína and Lochmanová, Gabriela and Zdráhal, Zbyněk}, article_number = {JAN 01}, doi = {http://dx.doi.org/10.1016/j.mcpro.2021.100114}, keywords = {POSTTRANSLATIONAL MODIFICATIONS; DOWN PROTEOMICS; PROPIONYLATION; IDENTIFICATION; METHYLATION; ACETYLATION}, language = {eng}, issn = {1535-9476}, journal = {Molecular and Cellurar Proteomic}, title = {Trimethylacetic Anhydride-Based Derivatization Facilitates Quantification of Histone Marks at the MS1 Level}, url = {https://www.mcponline.org/article/S1535-9476(21)00086-4/pdf}, volume = {20}, year = {2021} }
TY - JOUR ID - 1824743 AU - Kuchaříková, Hana - Dobrovolná, Pavlína - Lochmanová, Gabriela - Zdráhal, Zbyněk PY - 2021 TI - Trimethylacetic Anhydride-Based Derivatization Facilitates Quantification of Histone Marks at the MS1 Level JF - Molecular and Cellurar Proteomic VL - 20 IS - JAN 01 SP - "100114" EP - "100114" PB - American Society for Biochemistry and Molecular Biology SN - 15359476 KW - POSTTRANSLATIONAL MODIFICATIONS KW - DOWN PROTEOMICS KW - PROPIONYLATION KW - IDENTIFICATION KW - METHYLATION KW - ACETYLATION UR - https://www.mcponline.org/article/S1535-9476(21)00086-4/pdf N2 - Histone post-translational modifications (hPTMs) are epigenetic marks that strongly affect numerous processes, including cell cycling and protein interactions. They have been studied by both antibody- and MS-based methods for years, but the analyses are still challenging, mainly because of the diversity of histones and their modifications arising from high contents of reactive amine groups in their amino acid sequences. Here, we introduce use of trimethylacetic anhydride (TMA) as a new reagent for efficient histone derivatization, which is a requirement for bottom-up proteomic hPTM analysis. TMA can denyatize unmodified amine groups of lysine residues and amine groups generated at peptide N-termini by trypsin digestion. The derivatization is facilitated by microwave irradiation, which also reduces incubation times to minutes. We demonstrate that histone derivatization with TMA reliably provides high yields of fully derivatized peptides and thus is an effective alternative to conventional methods. TMA afforded more than 98% and 99% labeling efficiencies for histones H4 and H3, respectively, thereby enabling accurate quantification of peptide forms. Trimethylacetylation substantially improves chromatographic separation of peptide forms, which is essential for direct quantification based on signals extracted from MS1 data. For this purpose, software widely applied by the proteomics community can be used without additional computational development. Thorough comparison with widely applied propionylation highlights the advantages of TMA-based histone derivatization for monitoring hPTMs in biological samples. ER -
KUCHAŘÍKOVÁ, Hana, Pavlína DOBROVOLNÁ, Gabriela LOCHMANOVÁ a Zbyněk ZDRÁHAL. Trimethylacetic Anhydride-Based Derivatization Facilitates Quantification of Histone Marks at the MS1 Level. \textit{Molecular and Cellurar Proteomic}. American Society for Biochemistry and Molecular Biology, 2021, roč.~20, JAN 01, s.~''100114'', 14 s. ISSN~1535-9476. Dostupné z: https://dx.doi.org/10.1016/j.mcpro.2021.100114.
|