Naito Yuko, Takematsu Hiromu, Koyama Susumu, Miyake Shizu, Yamamoto Harumi, Fujinawa Reiko, Sugai Manabu, Okuno Yasushi, Tsujimoto Gozoh, Yamaji Toshiyuki, Hashimoto Yasuhiro, Itohara Shigeyoshi, Kawasaki Toshisuke, Suzuki Akemi, Kozutsumi Yasunori
Laboratory of Membrane Biochemistry and Biophysics, Graduate School of Biostudies, Kyoto University, Yoshida-shimoadachi, Sakyo-ku, Kyoto 606-8501, Japan.
Mol Cell Biol. 2007 Apr;27(8):3008-22. doi: 10.1128/MCB.02047-06. Epub 2007 Feb 12.
Sialic acid (Sia) is a family of acidic nine-carbon sugars that occupies the nonreducing terminus of glycan chains. Diversity of Sia is achieved by variation in the linkage to the underlying sugar and modification of the Sia molecule. Here we identified Sia-dependent epitope specificity for GL7, a rat monoclonal antibody, to probe germinal centers upon T cell-dependent immunity. GL7 recognizes sialylated glycan(s), the alpha2,6-linked N-acetylneuraminic acid (Neu5Ac) on a lactosamine glycan chain(s), in both Sia modification- and Sia linkage-dependent manners. In mouse germinal center B cells, the expression of the GL7 epitope was upregulated due to the in situ repression of CMP-Neu5Ac hydroxylase (Cmah), the enzyme responsible for Sia modification of Neu5Ac to Neu5Gc. Such Cmah repression caused activation-dependent dynamic reduction of CD22 ligand expression without losing alpha2,6-linked sialylation in germinal centers. The in vivo function of Cmah was analyzed using gene-disrupted mice. Phenotypic analyses showed that Neu5Gc glycan functions as a negative regulator for B-cell activation in assays of T-cell-independent immunization response and splenic B-cell proliferation. Thus, Neu5Gc is required for optimal negative regulation, and the reaction is specifically suppressed in activated B cells, i.e., germinal center B cells.
唾液酸(Sia)是一类酸性九碳糖,占据聚糖链的非还原末端。Sia的多样性通过与基础糖的连接变化和Sia分子的修饰来实现。在这里,我们确定了大鼠单克隆抗体GL7的Sia依赖性表位特异性,以在T细胞依赖性免疫过程中探测生发中心。GL7以Sia修饰和Sia连接依赖性方式识别唾液酸化聚糖,即乳糖胺聚糖链上的α2,6连接的N-乙酰神经氨酸(Neu5Ac)。在小鼠生发中心B细胞中,由于CMP-Neu5Ac羟化酶(Cmah)的原位抑制,GL7表位的表达上调,Cmah是负责将Neu5Ac的Sia修饰为Neu5Gc的酶。这种Cmah抑制导致生发中心中CD22配体表达的激活依赖性动态降低,而不会失去α2,6连接的唾液酸化。使用基因敲除小鼠分析了Cmah的体内功能。表型分析表明,在T细胞非依赖性免疫应答和脾B细胞增殖试验中,Neu5Gc聚糖作为B细胞激活的负调节因子发挥作用。因此,Neu5Gc是最佳负调节所必需的,并且该反应在活化的B细胞即生发中心B细胞中被特异性抑制。