Iavarone Federica, D'Alessandro Alfredo, Tian Na, Cabras Tiziana, Messana Irene, Helmerhorst Eva J, Oppenheim Frank G, Castagnola Massimo
Facoltà di Medicina, Istituto di Biochimica e di Biochimica Clinica and/or Istituto per la Chimica del Riconoscimento Molecolare (CNR), Università Cattolica, Roma, Italy.
J Sep Sci. 2014 Jul;37(14):1896-902. doi: 10.1002/jssc.201400227. Epub 2014 May 23.
During a survey of human saliva by a top-down reversed-phase high-performance liquid chromatography with electrospray ionization mass spectrometry approach, two proteins eluting at 27.4 and 28.4 min, with average masses of 15 494 ± 1 and 11 142 ± 1 Da, were detected in a subject from Boston. The Δmass value (4352 Da) of the two proteins was similar to the difference in mass values between intact (150 amino acids, [a.a.]) and truncated acidic proline-rich proteins (aPRPs; 106 a.a.) suggesting an a.a. substitution in the first 106 residues resulting in a strong reduction in polarity, since under the same experimental conditions aPRPs eluted at ∼22.5 min (intact) and 23.5 min (truncated forms). Manual inspection of the high-resolution high-performance liquid chromatography with electrospray ionization tandem mass spectra of the truncated isoform showed the replacement of the phosphorylated Ser-22 in PRP-3 with a Phe residue. Inspection of the tandem mass spectra of the intact isoform confirmed the substitution, which is allowed by the code transition TCT→TTT and is in agreement with the dramatic increase in elution time. The isoform was also detected in two other subjects, one from Boston (unrelated to the previous) and one from Rome. For this reason we propose to name this variant PRP-1 (PRP-3) RB (Roma-Boston) Ser22 (phos)→Phe.
在采用自上而下的反相高效液相色谱-电喷雾电离质谱法对人类唾液进行的一项调查中,在一名来自波士顿的受试者的唾液中检测到两种蛋白质,它们分别在27.4分钟和28.4分钟洗脱,平均分子量分别为15494±1道尔顿和11142±1道尔顿。这两种蛋白质的Δ质量值(4352道尔顿)与完整的(150个氨基酸,[aa])和截短的富含酸性脯氨酸的蛋白质(aPRPs;106个氨基酸)之间的质量值差异相似,这表明在前106个残基中发生了氨基酸取代,导致极性大幅降低,因为在相同实验条件下,aPRPs分别在约22.5分钟(完整形式)和23.5分钟(截短形式)洗脱。对截短异构体的高分辨率高效液相色谱-电喷雾电离串联质谱进行人工检查发现,PRP-3中磷酸化的Ser-22被苯丙氨酸残基取代。对完整异构体的串联质谱检查证实了这种取代,密码子转换TCT→TTT允许这种取代,并且与洗脱时间的显著增加一致。在另外两名受试者中也检测到了这种异构体,一名来自波士顿(与之前的无关),一名来自罗马。因此,我们建议将这种变体命名为PRP-1(PRP-3)RB(罗马-波士顿)Ser22(磷酸化)→苯丙氨酸。