Department of Chemistry, University of Wisconsin-Madison, 1101 University Avenue, Madison, Wisconsin 53706-1322, United States.
School of Pharmacy, University of Wisconsin-Madison, 777 Highland Avenue, Madison, Wisconsin 53705-2222, United States.
ACS Chem Neurosci. 2021 Feb 17;12(4):782-798. doi: 10.1021/acschemneuro.1c00007. Epub 2021 Feb 1.
The crab nervous system is an important model for understanding neural circuit dynamics and modulation, but the identity of neuromodulatory substances and their influence on circuit dynamics in this system remains incomplete, particularly with respect to behavioral state-dependent modulation. Therefore, we used a multifaceted mass spectrometry (MS) method to identify neuropeptides that differentiate the unfed and fed states. Duplex stable isotope labeling revealed that the abundance of 80 of 278 identified neuropeptides was distinct in ganglia and/or neurohemal tissue from fed vs unfed animals. MS imaging revealed that an additional 7 and 11 neuropeptides exhibited altered spatial distributions in the brain and the neuroendocrine pericardial organs (POs), respectively, during these two feeding states. Furthermore, sequencing yielded 69 newly identified putative neuropeptides that may influence feeding state-related neuromodulation. Two of these latter neuropeptides were determined to be upregulated in PO tissue from fed crabs, and one of these two peptides influenced heartbeat in preparations. Overall, the results presented here identify a cohort of neuropeptides that are poised to influence feeding-related behaviors, providing valuable opportunities for future functional studies.
蟹类神经系统是研究神经回路动力学和调制的重要模型,但该系统中神经调质物质的身份及其对回路动力学的影响仍不完整,特别是在行为状态依赖的调制方面。因此,我们使用了一种多方面的质谱(MS)方法来鉴定区分未进食和进食状态的神经肽。双相稳定同位素标记显示,在 278 种鉴定出的神经肽中,有 80 种在进食和未进食动物的神经节和/或神经内分泌心囊中丰度不同。MS 成像显示,在这两种进食状态下,分别有另外 7 种和 11 种神经肽在大脑和神经内分泌心包器官(PO)中的空间分布发生改变。此外,测序产生了 69 种新鉴定的潜在神经肽,这些神经肽可能影响与进食状态相关的神经调制。其中两种神经肽被确定在进食蟹的 PO 组织中上调,其中一种肽在 制剂中影响心跳。总的来说,这里呈现的结果确定了一批神经肽,这些神经肽有可能影响与进食相关的行为,为未来的功能研究提供了宝贵的机会。