4.8 Article

Integrated Label-Free and 10-Plex DiLeu Isobaric Tag Quantitative Methods for Profiling Changes in the Mouse Hypothalamic Neuropeptidome and Proteome: Assessment of the Impact of the Gut Microbiome

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ANALYTICAL CHEMISTRY
卷 92, 期 20, 页码 14021-14030

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AMER CHEMICAL SOC
DOI: 10.1021/acs.analchem.0c02939

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资金

  1. National Institutes of Health (NIH) [R01DK071801, RF1AG052324, P41GM108538, DK108259]
  2. National Natural Science Foundation of China [81973450]
  3. Jiangsu Qinglan Project
  4. Jiangsu 333 Project
  5. Young Researchers Training Project of China Association of Traditional Chinese Medicine [QNRC2-C14]
  6. National Institutes of Health under the Ruth L. Kirschstein National Research Service Award from the National Heart Lung and Blood Institute [T32 HL 007936]
  7. Wisconsin Alumni Research Foundation
  8. University of Wisconsin-Madison School of Pharmacy
  9. NIH [NIH-NCRR S10RR029531]
  10. Office of the Vice Chancellor for Research and Graduate Education at the University of Wisconsin-Madison

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Gut microbiota can regulate host physiological and pathological status through gut-brain communications or pathways. However, the impact of the gut microbiome on neuropeptides and proteins involved in regulating brain functions and behaviors is still not clearly understood. To address the problem, integrated label-free and 10-plex DiLeu isobaric tag-based quantitative methods were implemented to compare the profiling of neuropeptides and proteins in the hypothalamus of germ-free (GF)- vs conventionally raised (ConvR)-mice. A total of 2943 endogenous peptides from 63 neuropeptide precursors and 3971 proteins in the mouse hypothalamus were identified. Among these 368 significantly changed peptides (fold changes over 1.5 and a p-value of <0.05), 73.6% of the peptides showed higher levels in GF-mice than in ConvR-mice, and 26.4% of the peptides had higher levels in ConvR-mice than in GF-mice. These peptides were mainly from secretogranin-2, phosphatidylethanolamine-binding protein-1, ProSAAS, and proenkephalin-A. A quantitative proteomic analysis employing DiLeu isobaric tags revealed that 282 proteins were significantly up- or down-regulated (fold changes over 1.2 and a p-value of <0.05) among the 3277 quantified proteins. These neuropeptides and proteins were mainly involved in regulating behaviors, transmitter release, signaling pathways, and synapses. Interestingly, pathways including long-term potentiation, long-term depression, and circadian entrainment were involved. In the present study, a combined label-free and 10-plex DiLeu-based quantitative method enabled a comprehensive profiling of gut microbiome-induced dynamic changes of neuropeptides and proteins in the hypothalamus, suggesting that the gut microbiome might mediate a range of behavioral changes, brain development, and learning and memory through these neuropeptides and proteins.

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