4.4 Article

Peptidome analysis of cerebrospinal fluid in neonates with hypoxic-ischemic brain damage

Journal

MOLECULAR BRAIN
Volume 13, Issue 1, Pages -

Publisher

BMC
DOI: 10.1186/s13041-020-00671-9

Keywords

Peptidomics; Cerebrospinal fluid; Neonates; Hypoxic-ischemic brain damage; Pyroptosis

Categories

Funding

  1. National Natural Science Foundation of China [81671500]
  2. Jiangsu Provincial Six Talent Peaks [WSN-157]
  3. 333 project of Jiangsu Province
  4. Jiangsu Provincial Special Program of Medical Science [BL2012018]
  5. Nanjing Sanitation Engineering of Young Talents during the 13th Five-Year Plan Period [QRX17076]

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Hypoxic-ischemic brain injury (HIBD) causes neonatal death and serious neurological disability; however, there are currently no promising therapies for it excepting cooling. Therefore, in this study, we used peptidome analysis to identify differentially expressed peptides in cerebrospinal fluid (CSF) of neonates with HIBD or controls, which may give a foundation for finding new promising drugs of neonatal HIBD. CSF samples were collected from neonates with HIBD (n = 4) or controls (n = 4). ITRAQ LC-MS/MS was used to identify differentially expressed peptides between two groups. A total of 35 differentially expressed peptides from 25 precursor proteins were identified. The 2671.5 Da peptide (HSQFIGYPITLFVEKER), one of the down-regulated peptides in neonatal HIBD, is a fragment of heat shock protein 90-alpha (HSP90 alpha/HSP90AA1). Results of bioinformatics analysis showed that HSP90 alpha/HSP90AA1 was located in the protein-protein interaction (PPI) network hub and was involved in the NOD-LIKE receptor (NLR) signaling pathway. This peptide, we named it Hypoxic-Ischemic Brain Damage Associated Peptide (HIBDAP), is a hydrophilic peptide with high stability and has a long half-life of 3.5 h in mammalian reticulocytes. It was demonstrated that TAT-HIBDAP could successfully enter PC12 cells and further into the nucleus. After HIBDAP pretreatment and 6 h of OGD treatment, low concentrations of HIBDAP increased the survival rate of cells, except 40 mu M had a toxic effect. Safe concentrations of HIBDAP reduced pyroptosis of PC12 cells under OGD, except 20 mu M had no effect, by suppressing expressions of NLRP3, ASC and Caspase-1 except NLRP1. The results of our study identified the characterization and expression profiles of peptides in CSF of neonatal HIBD. Several meaningful peptides such as HIBDAP may play significant roles in neonatal HIBD and provide new therapeutic targets for neonatal HIBD.

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