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部分、双酶促去磷酸化和内源性谷氨酸酶水解作为一种通过质谱增强酪蛋白磷酸肽(CPPs)鉴定的原始方法。

Partial-, Double-Enzymatic Dephosphorylation and EndoGluC Hydrolysis as an Original Approach to Enhancing Identification of Casein Phosphopeptides (CPPs) by Mass Spectrometry.

作者信息

Deracinois Barbara, Matéos Aurélie, Romelard Audrey, Boulier Audrey, Auger Julie, Baniel Alain, Ravallec Rozenn, Flahaut Christophe

机构信息

UMR Transfrontalière BioEcoAgro N° 1158, Univ. Lille, INRAe, Univ. Liège, UPJV, YNCREA, Univ. Artois, Univ. Littoral Côte d'Opale, ICV-Institut Charles Viollette, 59000 Lille, France.

Ingredia S.A., 51 Av. Lobbedez-CS 60946, CEDEX, 62033 Arras, France.

出版信息

Foods. 2021 Sep 9;10(9):2134. doi: 10.3390/foods10092134.

Abstract

The identification of phosphopeptides is currently a challenge when they are part of a complex matrix of peptides, such as a milk protein enzymatic hydrolysate. This challenge increases with both the number of phosphorylation sites on the phosphopeptides and their amino acid length. Here, this paper reports a four-phase strategy from an enzymatic casein hydrolysate before a mass spectrometry analysis in order to enhance the identification of phosphopeptides and phosphosites: (i) the control protein hydrolysate, (ii) a two-step enzymatic dephosphorylation of the latter, allowing for the almost total dephosphorylation of peptides, (iii) a one-step enzymatic dephosphorylation, allowing for the partial dephosphorylation of the peptides and (iv) an additional endoGluC enzymatic hydrolysis, allowing for the cleavage of long-size peptides into shorter ones. The reverse-phase high-pressure liquid chromatography-tandem mass spectrometry (RP-HPLC-MS/MS) analyses of hydrolysates that underwent this four-phase strategy allowed for the identification of 28 phosphorylation sites (90%) out of the 31 referenced in UniprotKB/Swiss-Prot (1 June 2021), compared to 17 sites (54%) without the latter. The alpha-S2 casein phosphosites, referenced by their similarity in the UniProt database, were experimentally identified, whereas pSer148, pThr166 and pSer187 from a multiphosphorylated long-size kappa-casein were not. Data are available via ProteomeXchange with identifier PXD027132.

摘要

当磷酸化肽存在于复杂的肽基质中,如乳蛋白酶解物时,其鉴定目前是一项挑战。随着磷酸化肽上磷酸化位点数量及其氨基酸长度的增加,这一挑战也会加剧。在此,本文报道了一种四阶段策略,该策略应用于质谱分析之前的酪蛋白酶解物,以提高磷酸化肽和磷酸化位点的鉴定率:(i)对照蛋白水解物,(ii)对后者进行两步酶促去磷酸化,使肽几乎完全去磷酸化,(iii)一步酶促去磷酸化,使肽部分去磷酸化,以及(iv)额外的内肽酶GluC酶解,将长肽切割成短肽。对经过此四阶段策略的水解物进行反相高压液相色谱-串联质谱(RP-HPLC-MS/MS)分析,与未采用该策略时鉴定出17个位点(54%)相比,此次鉴定出了UniprotKB/Swiss-Prot(2021年6月1日)中引用的31个磷酸化位点中的28个(90%)。通过UniProt数据库中的相似性引用的α-S2酪蛋白磷酸化位点已通过实验鉴定,但多磷酸化长链κ-酪蛋白中的pSer148、pThr166和pSer187未被鉴定。数据可通过ProteomeXchange获取,标识符为PXD027132。

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