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首页> 外文期刊>Analytical Biochemistry: An International Journal of Analytical and Preparative Methods >Precursor ion discovery on a hybrid quadrupole-time-of-flight mass spectrometer for gonadotropin-releasing hormone detection in complex biological mixtures
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Precursor ion discovery on a hybrid quadrupole-time-of-flight mass spectrometer for gonadotropin-releasing hormone detection in complex biological mixtures

机译:混合四极杆飞行时间质谱仪上的前体离子发现,用于复杂生物混合物中促性腺激素释放激素的检测

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摘要

The gonadotropin-releasing hormone (GnRH) family includes several hypophysiotropic peptides occupying a central position in the regulatory loop controlling reproduction. Studies are still under way to clarify its biological role and evolutionary implication. Although sequencing of multiple genomes is bringing further advances in the understanding of the evolution of GnRH, there is still a need for biochemical studies aiming to identify GnRH from different species. Using a hybrid quadrupole-time-of-flight (Q-TOF) instrument, a new method for selective and sensitive GnRH detection and characterization from tissue extracts has been developed. The method uses the "precursor ion discovery" mode based on the capability of the Q-TOF analyzer to quickly record alternate mass spectra at low and high collision energy of precursor and product ion spectra, respectively, following liquid chromatographic separation of complex biological mixtures. The method exploits the selective detection of a specific b(2) product ion at m/z 249.1, corresponding to the N-terminus dipeptide pyroglutamic acid-histidine, highly conserved among nearly all species (22 of 24), and deriving from the preferential fragmentation of GnRHs carrying the dipeptide. Importantly, the method also includes acquisition of the product ion spectra from any candidate precursor ion, thereby allowing the determination of sequence information to confirm the GnRH identity or to isolate new ones. (C) 2007 Elsevier Inc. All rights reserved.
机译:促性腺激素释放激素(GnRH)家族包括几个促营养肽,它们在控制繁殖的调节环中占据中心位置。仍在进行研究以阐明其生物学作用和进化意义。尽管对多个基因组进行测序正在使人们进一步了解GnRH的进化,但仍需要进行生化研究以鉴定不同物种的GnRH。使用混合四极杆飞行时间(Q-TOF)仪器,已开发出一种用于从组织提取物中进行选择性和灵敏GnRH检测和表征的新方法。该方法基于Q-TOF分析仪的能力,使用“前体离子发现”模式,分别在复杂生物混合物的液相色谱分离后,分别在前体和产物离子光谱的低和高碰撞能量下快速记录交替质谱。该方法利用m / z 249.1的特定b(2)产物离子的选择性检测,该离子对应于N端二肽焦谷氨酸-组氨酸,在几乎所有物种中高度保守(24个中的22个),并源自于优先携带二肽的GnRH的片段化。重要的是,该方法还包括从任何候选前体离子中获取产物离子光谱,从而允许确定序列信息以确认GnRH身份或分离出新的。 (C)2007 Elsevier Inc.保留所有权利。

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