m the J-Oil Mills, Inc., 11, Kagetoricho, Yokohama, Kanagawa 245-0064, Japan.
J Biol Chem. 2012 Oct 5;287(41):33973-82. doi: 10.1074/jbc.M111.327692. Epub 2012 Aug 7.
Fucα1-6 oligosaccharide has a variety of biological functions and serves as a biomarker for hepatocellular carcinoma because of the elevated presence of fucosylated α-fetoprotein (AFP) in this type of cancer. In this study we purified a novel Fucα1-6-specific lectin from the mushroom Pholiota squarrosa by ion-exchange chromatography and affinity chromatography on thyroglobulin-agarose. The purified lectin was designated as PhoSL (P. squarrosa lectin). SDS-PAGE, MALDI-TOF mass spectrometry, and N-terminal amino acid sequencing indicate that PhoSL has a molecular mass of 4.5 kDa and consists of 40 amino acids (NH(2)-APVPVTKLVCDGDTYKCTAYLDFGDGRWVAQWDTNVFHTG-OH). Isoelectric focusing of the lectin showed bands near pI 4.0. The lectin activity was stable between pH 2.0 and 11.0 and at temperatures ranging from 0 to 100 °C for incubation times of 30 min. When PhoSL was investigated with frontal affinity chromatography using 132 pyridylaminated oligosaccharides, it was found that the lectin binds only to core α1-6-fucosylated N-glycans and not to other types of fucosylated oligosaccharides, such as α1-2-, α1-3-, and α1-4-fucosylated glycans. Furthermore, PhoSL bound to α1-6-fucosylated AFP but not to non-fucosylated AFP. In addition, PhoSL was able to demonstrate the differential expression of α1-6 fucosylation between primary and metastatic colon cancer tissues. Thus, PhoSL will be a promising tool for analyzing the biological functions of α1-6 fucosylation and evaluating Fucα1-6 oligosaccharides as cancer biomarkers.
岩蕈凝集素是一种新型的 Fucα1-6 特异性凝集素,从蕈类 Pholiota squarrosa 通过离子交换层析和甲状腺球蛋白琼脂糖亲和层析进行纯化。SDS-PAGE、MALDI-TOF 质谱和 N 端氨基酸序列分析表明 PhoSL 分子量为 4.5 kDa,由 40 个氨基酸组成(NH2-APVPVTKLVCDGDTYKCTAYLDFGDGRWVAQWDTNVFHTG-OH)。等电聚焦显示该凝集素的等电点接近 pI 4.0。该凝集素在 pH 2.0 至 11.0 之间以及在 0 至 100°C 的温度范围内孵育 30 分钟时具有稳定性。当使用 132 个吡啶氨甲酰基化寡糖进行 PhoSL 的前沿亲和层析研究时,发现该凝集素仅与核心α1-6-岩藻糖基化 N-聚糖结合,而不与其他类型的岩藻糖基化寡糖结合,例如α1-2-、α1-3-和α1-4-岩藻糖基化糖。此外,PhoSL 与α1-6-岩藻糖基化 AFP 结合,但与非岩藻糖基化 AFP 不结合。此外,PhoSL 能够证明原发性和转移性结肠癌组织之间α1-6 岩藻糖基化的差异表达。因此,PhoSL 将成为分析α1-6 岩藻糖基化生物学功能和评估 Fucα1-6 寡糖作为癌症生物标志物的有前途的工具。