Reiser H, Coligan J, Benacerraf B, Rock K L
Proc Natl Acad Sci U S A. 1987 May;84(10):3370-4. doi: 10.1073/pnas.84.10.3370.
We have characterized the TAP molecule, an Ly-6 linked T-cell-activating glycoprotein. The three TAP bands that are precipitated from metabolically labeled cells display a common migration pattern in isoelectric focusing/NaDodSO4/PAGE gels and have common N-terminal sequences. This sequence is rich in cysteine and is homologous to that previously reported for the Ly-6.1E antigen. We, therefore, compared TAP and Ly-6.1E biochemically and found them to be structurally distinct. Given the role of TAP in T-cell activation, we further studied whether the molecule was phosphorylated. We have not found evidence for phosphorylation of the TAP protein. The carbohydrates present on the TAP molecule are resistant to peptide N-glycosidase F in vitro and tunicamycin in vivo. The upper band of the TAP triplet is susceptible to treatment with trifluoromethanesulfonic acid and thus seems to be of the O-linked rather than of the N-linked variety. The biosynthetic processing of TAP was studied in pulse-chase experiments. The middle band of the TAP triplet appears to be the earliest detectable species. Its conversion to the O-linked high molecular weight species can be blocked by monensin.
我们已对TAP分子进行了特性分析,它是一种与Ly-6相关的T细胞激活糖蛋白。从经代谢标记的细胞中沉淀出的三条TAP条带在等电聚焦/SDS/PAGE凝胶中显示出共同的迁移模式,并且具有共同的N端序列。该序列富含半胱氨酸,且与先前报道的Ly-6.1E抗原的序列同源。因此,我们对TAP和Ly-6.1E进行了生化比较,发现它们在结构上是不同的。鉴于TAP在T细胞激活中的作用,我们进一步研究了该分子是否被磷酸化。我们未找到TAP蛋白磷酸化的证据。TAP分子上的碳水化合物在体外对肽N-糖苷酶F有抗性,在体内对衣霉素有抗性。TAP三联体的上带易受三氟甲磺酸处理的影响,因此似乎是O-连接型而非N-连接型。在脉冲追踪实验中研究了TAP的生物合成过程。TAP三联体的中间条带似乎是最早可检测到的物种。其向O-连接的高分子量物种的转化可被莫能菌素阻断。