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蛇毒组学——从低分辨率的毒素模式识别到具有绝对定量的毒素解析毒液蛋白质组学。

Snake venomics - from low-resolution toxin-pattern recognition to toxin-resolved venom proteomes with absolute quantification.

机构信息

a Evolutionary and Translational Venomics Laboratory , CSIC , Valencia , Spain.

出版信息

Expert Rev Proteomics. 2018 Jul;15(7):555-568. doi: 10.1080/14789450.2018.1500904. Epub 2018 Jul 20.

Abstract

Venoms are integrated phenotypes used by a wide range of organisms for predatory and defensive purposes. The study of venoms is of great interest in diverse fields, such as evolutionary ecology and biotechnology. Omics technologies have contributed to understanding the evolutionary mechanisms that molded snake venoms to their present-day structural and functional variability landscape. Areas covered: This review article reflects on two recent implementations in venomics: absolute quantification of intact proteins by elemental mass spectrometry, and top-down molecular mass spectrometry. Expert commentary: Leveraging on a new way of polyatomic interference removal, a triple quadrupole inductively coupled plasma mass spectrometry configuration has proven feasible for the absolute quantification of venom toxins via sulfur detection. A major advantage of this approach over quantitative molecular mass spectrometry techniques is that only a generic S-standard is required to quantify all the chromatographically separated sulfur-containing fractions. Top-down venomics is in its infancy but, due to recent hardware and software developments, is gaining momentum. Proteoform-resolved venom proteomes are needed to understand the spatio-temporal variability landscape underlying the adaptations that drive intraspecific venom evolution. Integrating top-down venomics and absolute proteoform quantification into a novel elemental and molecular mass spectrometry configuration will represent a quantitative leap in the study of individual venoms.

摘要

毒液是广泛存在于各种生物中的一种综合表型,用于捕食和防御目的。毒液的研究在进化生态学和生物技术等多个领域都具有重要意义。组学技术有助于理解塑造蛇毒液现今结构和功能变异性景观的进化机制。涵盖领域:本文综述了毒液组学的两个最新应用:通过元素质量分析对完整蛋白质进行绝对定量,以及自上而下的分子质量分析。专家评论:利用一种新的多原子干扰消除方法,三重四极杆电感耦合等离子体质谱配置已被证明可通过硫检测对毒液毒素进行绝对定量。与定量分子质量分析技术相比,这种方法的一个主要优势是仅需使用通用 S 标准即可定量所有色谱分离的含硫馏分。自上而下的毒液组学仍处于起步阶段,但由于最近的硬件和软件发展,它正在获得动力。需要进行蛋白水解酶解析的毒液蛋白质组学研究,以了解驱动种内毒液进化的适应性的时空变异性景观。将自上而下的毒液组学和绝对蛋白水解酶定量整合到新型元素和分子质量分析配置中,将代表个体毒液研究的一个定量飞跃。

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