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使用棒棒糖状超滤探针采集人类天然唾液肽组:简化并增强临床质谱中的肽检测。

Sampling human indigenous saliva peptidome using a lollipop-like ultrafiltration probe: simplify and enhance peptide detection for clinical mass spectrometry.

作者信息

Zhu Wenhong, Gallo Richard L, Huang Chun-Ming

机构信息

Sanford-Burnham Medical Research Institute.

出版信息

J Vis Exp. 2012 Aug 7(66):e4108. doi: 10.3791/4108.

Abstract

Although human saliva proteome and peptidome have been revealed they were majorly identified from tryptic digests of saliva proteins. Identification of indigenous peptidome of human saliva without prior digestion with exogenous enzymes becomes imperative, since native peptides in human saliva provide potential values for diagnosing disease, predicting disease progression, and monitoring therapeutic efficacy. Appropriate sampling is a critical step for enhancement of identification of human indigenous saliva peptidome. Traditional methods of sampling human saliva involving centrifugation to remove debris may be too time-consuming to be applicable for clinical use. Furthermore, debris removal by centrifugation may be unable to clean most of the infected pathogens and remove the high abundance proteins that often hinder the identification of low abundance peptidome. Conventional proteomic approaches that primarily utilize two-dimensional gel electrophoresis (2-DE) gels in conjugation with in-gel digestion are capable of identifying many saliva proteins. However, this approach is generally not sufficiently sensitive to detect low abundance peptides/proteins. Liquid chromatography-Mass spectrometry (LC-MS) based proteomics is an alternative that can identify proteins without prior 2-DE separation. Although this approach provides higher sensitivity, it generally needs prior sample pre-fractionation and pre-digestion with trypsin, which makes it difficult for clinical use. To circumvent the hindrance in mass spectrometry due to sample preparation, we have developed a technique called capillary ultrafiltration (CUF) probes. Data from our laboratory demonstrated that the CUF probes are capable of capturing proteins in vivo from various microenvironments in animals in a dynamic and minimally invasive manner. No centrifugation is needed since a negative pressure is created by simply syringe withdrawing during sample collection. The CUF probes combined with LC-MS have successfully identified tryptic-digested proteins. In this study, we upgraded the ultrafiltration sampling technique by creating a lollipop-like ultrafiltration (LLUF) probe that can easily fit in the human oral cavity. The direct analysis by LC-MS without trypsin digestion showed that human saliva indigenously contains many peptide fragments derived from various proteins. Sampling saliva with LLUF probes avoided centrifugation but effectively removed many larger and high abundance proteins. Our mass spectrometric results illustrated that many low abundance peptides became detectable after filtering out larger proteins with LLUF probes. Detection of low abundance saliva peptides was independent of multiple-step sample separation with chromatography. For clinical application, the LLUF probes incorporated with LC-MS could potentially be used in the future to monitor disease progression from saliva.

摘要

尽管人类唾液蛋白质组和肽组已被揭示,但它们主要是从唾液蛋白的胰蛋白酶消化物中鉴定出来的。在不预先用外源酶消化的情况下鉴定人类唾液的天然肽组变得至关重要,因为人类唾液中的天然肽在疾病诊断、疾病进展预测和治疗效果监测方面具有潜在价值。合适的采样是增强人类天然唾液肽组鉴定的关键步骤。传统的采集人类唾液的方法包括离心去除碎片,这可能太耗时,不适用于临床。此外,通过离心去除碎片可能无法清除大多数感染的病原体,也无法去除经常阻碍低丰度肽组鉴定的高丰度蛋白质。主要利用二维凝胶电泳(2-DE)凝胶结合胶内消化的传统蛋白质组学方法能够鉴定许多唾液蛋白。然而,这种方法通常对检测低丰度肽/蛋白质不够敏感。基于液相色谱-质谱(LC-MS)的蛋白质组学是一种无需事先进行2-DE分离就能鉴定蛋白质的替代方法。尽管这种方法具有更高的灵敏度,但通常需要事先进行样品预分级和用胰蛋白酶预消化,这使其难以用于临床。为了规避样品制备对质谱分析的阻碍,我们开发了一种称为毛细管超滤(CUF)探针的技术。我们实验室的数据表明,CUF探针能够以动态且微创的方式在体内从动物的各种微环境中捕获蛋白质。由于在样品采集过程中只需通过注射器抽吸即可产生负压,因此无需离心。CUF探针与LC-MS相结合已成功鉴定出经胰蛋白酶消化的蛋白质。在本研究中,我们通过创建一种类似棒棒糖的超滤(LLUF)探针升级了超滤采样技术,该探针可以轻松放入人类口腔。未经胰蛋白酶消化直接通过LC-MS分析表明,人类唾液中天然含有许多源自各种蛋白质的肽片段。用LLUF探针采集唾液避免了离心,但有效去除了许多较大的和高丰度的蛋白质。我们的质谱结果表明,在用LLUF探针滤除较大蛋白质后,许多低丰度肽变得可检测到。低丰度唾液肽的检测不依赖于通过色谱进行的多步样品分离。对于临床应用,结合LC-MS的LLUF探针未来可能用于监测唾液中的疾病进展。

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In vivo secretome sampling technology for proteomics.体内分泌组采样技术用于蛋白质组学。
Proteomics Clin Appl. 2007 Sep;1(9):953-62. doi: 10.1002/prca.200700031. Epub 2007 Aug 10.
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Human saliva proteome analysis.人类唾液蛋白质组分析。
Ann N Y Acad Sci. 2007 Mar;1098:323-9. doi: 10.1196/annals.1384.015.

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