AI Article Synopsis

  • Researchers analyzed donkey milk IgG using RP-UHPLC-MS/MS to examine its specific glycosylation patterns, revealing the presence of multiple subtypes.
  • Proteomic analysis showed that various IgG subtypes (IgG1, IgG2, IgG3, IgG5, IgG6, and IgG7) had unique glycopeptides linked to a conserved glycosylation site in their heavy-chain regions.
  • Notably, IgG5 exhibited a distinct glycosylation pattern with sialylated glycans, while structural diversity was primarily seen in IgG1, IgG5, and IgG7, highlighting the potential functional properties of donkey milk.

Article Abstract

Donkey milk IgG was probed for the site-specific -glycosylation pattern through RP-UHPLC-MS/MS. The affinity-purified milk IgG was subjected to SDS-PAGE and proteomic analysis, which revealed the presence of subtypes. Multiple -glycopeptides arising from the predicted donkey IgG1, IgG2, IgG3, IgG5, IgG6, and IgG7 subtypes' heavy-chain constant region were shown to contain glycans at the highly conserved glycosylation site in the CH2 domain. Differences in the peptide backbone with the site among subtypes generated after trypsin digestion resulted in the evaluation of the subtype-specific glycan pattern. Glycan sequence analysis indicated predominantly biantennary complex types with core fucosylation at the site . Interestingly, an additional site in the CH1 domain of the heavy-chain constant region of IgG5 was found to possess mainly sialylated biantennary complex glycans with NeuAc and NeuGc. Structural diversity of glycans was mainly observed in the predicted donkey IgG1, IgG5, and IgG7, whereas IgG2, IgG3, and IgG6 resulted in the glycopeptides that are of low abundance in the analyzed samples. These findings would pave the way for a better understanding of donkey milk functional properties.

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Source
http://dx.doi.org/10.1021/acs.jafc.4c07168DOI Listing

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