Kelm S, Schauer R, Crocker P R
Biochemisches Institut, University of Kiel, Germany.
Glycoconj J. 1996 Dec;13(6):913-26. doi: 10.1007/BF01053186.
For many years evidence has accumulated that sialic acids function in cellular interactions either by masking or as a recognition site. However, receptors or adhesion molecules mediating such functions between eukaryotic cells were unknown until about 5 years ago, when it was found that the members of the Selectin family mediate adhesion of leukocytes to specific endothelia through binding to sialylated glycans like sialyl Lewis. More recently, the Sialoadhesin family of sialic acid-dependent adhesion molecules was defined within the superfamily of immunoglobulin-like molecules. So far, it has been shown that sialoadhesin (Sn), CD22, CD33, the myelin-associated glycoprotein (MAG) and the Schwann cell myelin protein (SMP) belong to this family. In contrast to the Selectins, these proteins are associated with diverse biological processes, i.e. hemopoiesis, neuronal development and immunity. In this review their properties, carbohydrate specificities and potential biological functions are discussed. Finally, we provide perspectives with respect to the nature of ligands, implications of sialic acid modifications and future research.
多年来,越来越多的证据表明唾液酸在细胞相互作用中发挥作用,其方式要么是通过屏蔽,要么作为识别位点。然而,直到大约5年前,介导真核细胞间此类功能的受体或黏附分子仍不为人所知,当时发现选择素家族成员通过与唾液酸化聚糖(如唾液酸化路易斯寡糖)结合,介导白细胞与特定内皮细胞的黏附。最近,在免疫球蛋白样分子超家族中定义了唾液酸依赖性黏附分子的唾液黏附素家族。到目前为止,已经证明唾液黏附素(Sn)、CD22、CD33、髓鞘相关糖蛋白(MAG)和施万细胞髓鞘蛋白(SMP)属于这个家族。与选择素不同,这些蛋白质与多种生物学过程相关,即造血、神经元发育和免疫。在这篇综述中,将讨论它们的特性、碳水化合物特异性和潜在的生物学功能。最后,我们提供了关于配体性质、唾液酸修饰的影响以及未来研究的观点。