Institute of Biosciences and BioResources (IBBR), CNR, Naples, Italy; Allergy Data Laboratories s.r.l. (ADL), Latina, Italy.
Allergy Data Laboratories s.r.l. (ADL), Latina, Italy; Associated Centers for Molecular Allergology (CAAM), Rome, Italy.
Mol Immunol. 2019 Oct;114:189-195. doi: 10.1016/j.molimm.2019.07.023. Epub 2019 Jul 31.
The presence in cypress pollen of an important allergen, belonging to the gibberellin-regulated protein (GRP) family, has been suggested for many years. However, it has never been isolated and sometimes the homologous peach allergen, Pru p 7, has been used as a surrogate to perform immunological investigations. The aim of this study has been the isolation and molecular characterization of the GRP contained in the Cupressus sempervirens pollen. This protein, named Cypmaclein, has been purified from the natural source using conventional biochemical methods consisting in different chromatographic separations. Cypmaclein has been identified by direct protein sequencing of the N-terminal region and of internal fragments of the molecule. In SDS-PAGE, its apparent molecular mass is slightly higher than that of Pru p 7. Nevertheless, the mass spectrometry experiments reveal that the exact molecular mass of Cypmaclein (6821.88 Da) is very close to that of Pru p 7 (6909.90 Da). Two regions of Cypmaclein have been sequenced providing 50% of its primary structure. A high overall sequence identity of Cypmaclein with all the analyzed GRP has been observed, although in the N-terminal region the high identity is limited to the homolog of Cryptomeria japonica. In circular dichroism experiments Cypmaclein produced a spectrum overlapping that of Pru p 7. However, the comparative analysis of Cypmaclein, Pru p 7 and Pun g 7 IgE reactivity revealed a behavior that was not completely overlapping, thus suggesting that the IgE epitopes are only partially shared. In single point highest inhibition achievable assays performed with the FABER test, Cypmaclein efficiently competed with the allergenic peach and pomegranate GRP in the binding of specific IgE of patients sensitized to Pru p 7. In conclusion, the natural cypress pollen GRP has been isolated for the first time, its structural features have been investigated and its cross-reactivity with Pru p 7 and Pun g 7 has been demonstrated. This protein is now available for further investigations aimed at understanding its clinical relevance in the allergy to cypress pollen. In addition, the prevalence of sensitization directly to Cypmaclein, and not limited to the homologs, can be defined.
多年来,人们一直认为丝柏花粉中存在一种重要的过敏原,属于赤霉素调节蛋白(GRP)家族。然而,这种过敏原从未被分离出来,有时会使用同源的桃过敏原 Pru p 7 作为替代品来进行免疫学研究。本研究的目的是分离和分子表征丝柏花粉中含有的 GRP。这种名为 Cypmaclein 的蛋白质是从天然来源中使用常规生化方法(包括不同的色谱分离)纯化而来的。通过直接对分子的 N 端区域和内部片段进行蛋白质测序来鉴定 Cypmaclein。在 SDS-PAGE 中,其表观分子量略高于 Pru p 7。然而,质谱实验表明 Cypmaclein 的精确分子量(6821.88 Da)非常接近 Pru p 7(6909.90 Da)。对 Cypmaclein 的两个区域进行测序,提供了其一级结构的 50%。观察到 Cypmaclein 与所有分析的 GRP 具有很高的整体序列同一性,尽管在 N 端区域,高同一性仅限于日本柳杉的同源物。在圆二色性实验中,Cypmaclein 产生的光谱与 Pru p 7 的光谱重叠。然而,对 Cypmaclein、Pru p 7 和 Pun g 7 IgE 反应性的比较分析表明,它们的行为并不完全重叠,因此表明 IgE 表位仅部分共享。在使用 FABER 试验进行的单点最高抑制可实现测定中,Cypmaclein 能够有效地与致敏于 Pru p 7 的患者的特异性 IgE 结合竞争过敏原桃和石榴 GRP。总之,首次分离出天然丝柏花粉 GRP,研究了其结构特征,并证明了其与 Pru p 7 和 Pun g 7 的交叉反应性。该蛋白现在可用于进一步研究,以了解其在丝柏花粉过敏中的临床意义。此外,可以定义直接对 Cypmaclein 而不是同源物致敏的流行率。