Ideo Hiroko, Seko Akira, Ohkura Takashi, Matta Khushi L, Yamashita Katsuko
CREST (Core Research for Evolutional Science and Technology) of the Japan Science and Technology Corporation, 2-3, Kanda-Surugadai, Chiyoda-ku, Tokyo 101-0062, Japan.
Glycobiology. 2002 Mar;12(3):199-208. doi: 10.1093/glycob/12.3.199.
Galectin-4 is a member of galectin family and has two carbohydrate recognition domains. Although galectin-4 has been thought to function in cell adhesion, its precise carbohydrate binding specificity has not yet been clarified. We studied the carbohydrate binding specificity of galectin-4 comparatively with that of galectin-3, using surface plasmon resonance, galectin-3- or -4-Sepharose column chromatography and the inhibition assay of their binding to immobilized asialofetuin. Galectin-3 broadly recognized lactose, type 1, type 2, and core 1. The substitution at the C-2 and C-3 position of beta-galactose in these oligosaccharides with alpha-fucose, alpha-GalNAc, alpha-Neu5Ac, or sulfate increased the binding ability for galectin-3, whereas the substitution at the C-4 or C-6 position diminished the affinity. In contrast, galectin-4 had quite weak affinity to lactose, type 1, and type 2 (K(d) congruent with 8 x 10(-4) M). Galectin-4 showed weak binding ability to core 1 and C-2' or -3'-substituted lactose, type 1, and type 2 with alpha-fucose, alpha-GalNAc, or sulfate (K(d) : 5 x 10(-5) approximately 3 x 10(-4) M). Interestingly, the K(d) value, 3.4 x 10(-6) M, of SO(3)(-)-->3Galbeta1-->3GalNAc-O-Bn to galectin-4 at 25 degrees C was two orders of magnitude lower than that of core 1-O-Bn. 3'-Sialylated core 1 had very weak affinity to galectin-4, suggesting that 3'-O-sulfation of core 1 is critical for the recognition. These results suggest that galectin-4 has a unique carbohydrate binding specificity and interacts with O-linked sulfoglycans.
半乳糖凝集素-4是半乳糖凝集素家族的成员,有两个碳水化合物识别结构域。尽管人们认为半乳糖凝集素-4在细胞黏附中发挥作用,但其精确的碳水化合物结合特异性尚未阐明。我们使用表面等离子体共振、半乳糖凝集素-3或-4琼脂糖柱色谱以及它们与固定化去唾液酸胎球蛋白结合的抑制试验,比较研究了半乳糖凝集素-4与半乳糖凝集素-3的碳水化合物结合特异性。半乳糖凝集素-3广泛识别乳糖、1型、2型和核心1型。这些寡糖中β-半乳糖的C-2和C-3位被α-岩藻糖、α-N-乙酰半乳糖胺、α-唾液酸或硫酸盐取代,增加了对半乳糖凝集素-3的结合能力,而C-4或C-6位的取代则降低了亲和力。相比之下,半乳糖凝集素-4对乳糖、1型和2型的亲和力相当弱(解离常数约为8×10⁻⁴M)。半乳糖凝集素-4对核心1型以及C-2′或-3′取代的乳糖、1型和2型(含α-岩藻糖、α-N-乙酰半乳糖胺或硫酸盐)显示出较弱的结合能力(解离常数:5×10⁻⁵至3×10⁻⁴M)。有趣的是,在25℃下,SO₃⁻→3Galβ1→3GalNAc-O-Bn与半乳糖凝集素-4的解离常数为3.4×10⁻⁶M,比核心1-O-Bn的解离常数低两个数量级。3′-唾液酸化的核心1对半乳糖凝集素-4的亲和力非常弱,这表明核心1的3′-O-硫酸化对于识别至关重要。这些结果表明,半乳糖凝集素-4具有独特的碳水化合物结合特异性,并与O-连接的硫酸化聚糖相互作用。