Probing Neuropeptidomics by Mass Spectrometry

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Probing Neuropeptidomics by Mass Spectrometry
Author : Anonim
File Size : 49,5 Mb
Publisher : Unknown
Language : English
Release Date : 07 May 2024
ISBN : OCLC:805853754
Pages : 0 pages
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Probing Neuropeptidomics by Mass Spectrometry by Anonim Book PDF Summary

In this thesis, an array of biological mass spectrometry (MS) based methods were developed and employed to enable the identification and functional analysis of neuropeptides in the crustacean nervous system. Neuropeptides encompass the largest and most diverse group of signaling molecules in the nervous system. They are necessary for the initiation and regulation of numerous physiological processes such as feeding, reproduction and development. However, the discovery and identification of these important signaling molecules presents unique challenges due to the vast complexity and minute quantities of endogenously expressed peptides. Further functional analysis of neuropeptides needs to be conducted for a comprehensive neuropeptidomic study. Using the decapod crustacean nervous system and associated neuroendocrine organs as experiment model, this dissertation research focuses on the development of an integrated analytical platform for large-scale identification and discovery of neuropeptides, as well as investigation of the functional roles of neuropeptides. The work presented here contributes insight into neuropeptidome of a commercially and scientifically important crustacean species, blue crab /italicCallinectes sapidus/italic and the possible functionality of certain peptides. A multifaceted mass spectrometry approach combining complementary sample preparation techniques, advanced separation strategies, alternative fragmentation methods, mass spectral imaging (MSI) and stable isotopic labeling was used for large-scale identification and to provide comprehensive information on peptide expression level changes under different physiological states. Several new analytical methodologies and tools have been developed to enable enhanced neuropeptidome coverage and improved /italicde novo/italic sequencing. A two dimensional liquid chromatography (2D-LC) method coupling reversed-phase liquid chromatography (RPLC) with nano-LC-ESI-Q-TOF MS/MS was used for neuronal tissue extract analysis and greatly improved the neuropeptidome coverage. A homemade capillary isoelectric focusing (cIEF) system was used for separation of the most acidic neuropeptide family Orcokinins in the sinus gland (SG). Additionally, electron transfer dissociation (ETD) was employed for the identification and sequencing of intact crustacean hyperglycemic hormone precursor related peptides (CPRPs), a group of multiply charged peptides in the SG. More than 150 neuropeptides including over 40 novel ones were identified in blue crab's nervous system. Furthermore, a comparative peptidomic study utilized mass spectral imaging (MSI), stable isotopic labeling and electrophysiological study was developed to provide comprehensive information about peptide expression level changes after food intake. Moreover, a MS-based platform was developed to study the differential degradation of neuropeptides by extracellular peptidases via monitoring degradation rate and degradation products. Collectively, this body of work extends the capability of mass spectrometry as a bioanalytical tool for neuropeptide analysis and advances the basic understanding of neuronal signaling.

Probing Neuropeptidomics by Mass Spectrometry

In this thesis, an array of biological mass spectrometry (MS) based methods were developed and employed to enable the identification and functional analysis of neuropeptides in the crustacean nervous system. Neuropeptides encompass the largest and most diverse group of signaling molecules in the nervous system. They are necessary for the

Get Book
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