School of Pharmacy , University of Wisconsin-Madison , 777 Highland Avenue , Madison , Wisconsin 53705 , United States.
Department of Chemistry , University of Wisconsin-Madison , 1101 University Avenue , Madison , Wisconsin 53706 , United States.
ACS Chem Neurosci. 2018 Aug 15;9(8):2054-2063. doi: 10.1021/acschemneuro.7b00521. Epub 2018 Feb 7.
Neuromodulators and neurotransmitters play important roles in neural network development. The quantitative changes of these signaling molecules often reflect their regulatory roles in physiological processes. Currently, several commercial tags (e.g., iTRAQ and TMT) have been widely used in proteomics. With reduced cost and higher labeling efficiency, we employed a set of custom-developed N, N-dimethyl leucine (DiLeu) 4-plex isobaric tandem mass tags as an attractive alternative for the relative quantitation of neuropeptides in brain tissue of American lobster Homarus americanus at multiple developmental stages. A general workflow for isobaric labeling of neuropeptides followed by LC-MS/MS analysis has been developed, including optimized sample handling procedures. Overall, we were able to quantify 18 trace-amount neuropeptides from 6 different families using a single adult brain as a control. The quantitation results indicated that the expressions of different neuropeptide families had significant changes over distinct developmental stages. Additionally, our data revealed intriguing elevated expression of neuropeptides in the early juvenile development stage. The methodology presented here advanced the workflow of DiLeu as an alternative labeling approach and the application of DiLeu-based quantitative peptidomics, which can be extended to areas beyond neuroscience.
神经调质和神经递质在神经网络发育中发挥着重要作用。这些信号分子的数量变化通常反映了它们在生理过程中的调节作用。目前,几种商业标签(如 iTRAQ 和 TMT)已广泛应用于蛋白质组学。由于成本降低和标记效率提高,我们采用了一组定制的 N,N-二甲基亮氨酸(DiLeu)4 重同位素标记串联质量标签(isobaric tandem mass tags),作为一种有吸引力的替代方法,用于相对定量美洲龙虾 Homarus americanus 多个发育阶段脑组织中的神经肽。已经开发了一种用于神经肽的同重标记的通用工作流程,包括优化的样品处理程序。总体而言,我们能够使用单个成年大脑作为对照,从 6 个不同家族中定量 18 种痕量神经肽。定量结果表明,不同神经肽家族的表达在不同的发育阶段有显著变化。此外,我们的数据显示,在早期幼体发育阶段,神经肽的表达令人惊讶地升高。这里提出的方法学推进了 DiLeu 作为替代标记方法的工作流程,以及基于 DiLeu 的定量肽组学的应用,该方法可以扩展到神经科学以外的领域。