圖4肽段YLGYLEQLLR 譜圖與搜庫鑒定結果。(A) DDA 和(B) Full MS-DIA 的一級選擇窗口和二級鑒
定圖
Fig. 4Spectra and database search results of peptide
YLGYLEQLLR. MS isolation window and MS/ MS identifica-tion of (A) data
dependent acquisition (DDA) and (B) Full MS-DIA data
表2 100 ng Hela 細胞全蛋白樣本DDA 與Full MS-DIA 掃描參數、搜庫參數和鑒定結果(n =3)
Table 2 MS scan parameters, database search
parameters and identification results of DDA and full MS-DIA analysis of
100 ng Hela cell tryptic digest (n =3)
圖5 100 ng Hela 細胞全蛋白樣本DDA 與Full MS-DIA 鑒定結果比較。(A) 兩種方法蛋白鑒定結果比較;(B) 兩種方法二級譜圖匹配比較(肽段VVIGMDVAASEFFR)
Fig. 5 Comparison of identification results of 100 ng
Hela cell digest by DDA and Full MS-DIA methods. (A) Comparison of
identified number of proteins, (B) Comparison of identified MS/ MS
spectra (peptide VVIGMD-VAASEFFR)
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Quantification Analysis of Targeted Proteins in Complex Sample by Novel Data Independent Acquisition
AbstractData independent acquisition ( DIA) is a novel
MS scan mode for quantitative proteomics,acquiring all precursors as
well as fragments without any loss of low abundant ions, and breaks the
throughput limitation of product ion quantification by high-resolution
MS. Here we developed three DIA methods on quadrupole-linear ion
trap-Orbitrap (Q-qIT-OT) Tribrid MS, classic DIA, as well as novel wide
isolation window SIM scan (WiSIM)-DIA and full scan-DIA (Full MS-DIA).
Quantitative analysis of 10 low abundant peptides spiked in Hela cell
digest was performed by the three methods for linearity, reproducibility
and sensitivity evaluation. The results showed that the LOQs reached
amol level (14 -435 amol) with good linearity and effective MS/ MS
confirmation. WiSIM-DIA utilizes ultra-high resolution SIM scan for
quantification complementary with classic DIA. The isolation window of
Full MS-DIA was down to 3 amu, and the data could be directly used for
database searching, thus realizing the integration of data dependent
acquisition (DDA) and DIA, and avoiding the limitation of using spectra
library.
Keywords Orbitrap; Data independent acquisition; Proteomics; Absolute quantification