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用于磷酸肽定量分析的优化轨道阱高能碰撞解离技术

Optimized Orbitrap HCD for quantitative analysis of phosphopeptides.

作者信息

Zhang Yi, Ficarro Scott B, Li Shaojuan, Marto Jarrod A

机构信息

Department of Cancer Biology and Blais Proteomics Center, Dana-Farber Cancer Institute, Harvard Medical School, Boston, Massachusetts 02115-6084, USA.

出版信息

J Am Soc Mass Spectrom. 2009 Aug;20(8):1425-34. doi: 10.1016/j.jasms.2009.03.019. Epub 2009 Mar 28.

DOI:10.1016/j.jasms.2009.03.019
PMID:19403316
Abstract

Despite the tremendous commercial success of radio frequency quadrupole ion traps for bottom-up proteomics studies, there is growing evidence that peptides decorated with labile post-translational modifications are less amenable to low-energy, resonate excitation MS/MS analysis. Moreover, multiplexed stable isotope reagents designed for MS/MS-based quantification of peptides rely on accurate and robust detection of low-mass fragments for all precursors. Collectively these observations suggest that beam-type or tandem in-space MS/MS measurements, such as that available on traditional triple quadrupole mass spectrometers, may provide beneficial figures of merit for quantitative proteomics analyses. The recent introduction of a multipole collision cell adjacent to an Orbitrap mass analyzer provides for higher energy collisionally activated dissociation (HCD) with efficient capture of fragment ions over a wide mass range. Here we describe optimization of various instrument and post-acquisition parameters that collectively provide for quantification of iTRAQ-labeled phosphorylated peptides isolated from complex cell lysates. Peptides spanning a concentration dynamic range of 100:1 are readily quantified. Our results indicate that appropriate parameterization of collision energy as a function of precursor m/z and z provides for optimal performance in terms of peptide identification and relative quantification by iTRAQ. Using this approach, we readily identify activated signaling pathways downstream of oncogenic mutants of Flt-3 kinase in a model system of human myeloid leukemia.

摘要

尽管射频四极杆离子阱在自下而上的蛋白质组学研究中取得了巨大的商业成功,但越来越多的证据表明,带有不稳定翻译后修饰的肽不太适合低能量共振激发质谱/质谱分析。此外,为基于质谱/质谱的肽定量设计的多重稳定同位素试剂依赖于对所有前体的低质量碎片进行准确而可靠的检测。这些观察结果共同表明,束型或空间串联质谱/质谱测量,如传统三重四极杆质谱仪所具备的测量方式,可能为定量蛋白质组学分析提供有益的品质因数。最近在轨道阱质谱分析仪附近引入了多极碰撞池,可实现更高能量的碰撞诱导解离(HCD),并能在很宽的质量范围内有效捕获碎片离子。在此,我们描述了各种仪器和采集后参数的优化,这些参数共同实现了对从复杂细胞裂解物中分离出的iTRAQ标记的磷酸化肽的定量。跨越100:1浓度动态范围的肽很容易被定量。我们的结果表明,将碰撞能量作为前体m/z和z的函数进行适当参数化,在肽鉴定和iTRAQ相对定量方面可提供最佳性能。使用这种方法,我们在人髓系白血病模型系统中轻松鉴定出Flt-3激酶致癌突变体下游的激活信号通路。

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