Hofsteenge J, Blommers M, Hess D, Furmanek A, Miroshnichenko O
Friedrich Miescher-Institut, Switzerland.
J Biol Chem. 1999 Nov 12;274(46):32786-94. doi: 10.1074/jbc.274.46.32786.
C-Mannosylation is a unique form of protein glycosylation, involving the C-glycosidic attachment of a mannosyl residue to the indole moiety of Trp. In the two examples found so far, human RNase 2 and interleukin-12, only the first Trp in the recognition motif WXXW is specifically C-mannosylated. To establish the generality of protein C-mannosylation, and to learn more about its mechanism, the terminal components of the human complement system (C6, C7, C8,and C9), which contain multiple and complex recognition motifs, were examined. Together with C5b they form the cytolytic agent, the membrane attack complex. These are the first proteins that are C-mannosylated on more than one Trp residue as follows: six in C6, four in C7, C8alpha, and C8beta, and two in C9. Thus, from the 113 Trp residues in the complete membrane attack complex, 50 were found to undergo C-mannosylation. The other important finding is that in C6, C7, C8, and C9 Trp residues without a second Trp (or another aromatic residue) at the +3 position can be C-mannosylated. This shows that they must contain an additional C-mannosylation signal. Whether this is encoded in the primary or tertiary structure is presently unknown. Finally, all modified Trp residues are part of the highly conserved core of the thrombospondin type 1 repeats present in these proteins. Since this module has been found in a large number of other proteins, the results suggest further candidates for C-mannosylation.
C-甘露糖基化是一种独特的蛋白质糖基化形式,涉及将一个甘露糖基残基通过C-糖苷键连接到色氨酸的吲哚部分。在目前发现的两个例子中,即人核糖核酸酶2和白细胞介素-12,只有识别基序WXXW中的第一个色氨酸被特异性地C-甘露糖基化。为了确定蛋白质C-甘露糖基化的普遍性,并更多地了解其机制,对人补体系统的末端成分(C6、C7、C8和C9)进行了研究,这些成分包含多个复杂的识别基序。它们与C5b一起形成溶细胞剂——膜攻击复合物。这些是首批在多个色氨酸残基上发生C-甘露糖基化的蛋白质,具体情况如下:C6中有6个,C7、C8α和C8β中有4个,C9中有2个。因此,在完整的膜攻击复合物中的113个色氨酸残基中,有50个被发现发生了C-甘露糖基化。另一个重要发现是,在C6、C7、C8和C9中,在+3位置没有第二个色氨酸(或另一个芳香族残基)的色氨酸残基也可以被C-甘露糖基化。这表明它们一定含有额外的C-甘露糖基化信号。目前尚不清楚这是编码在一级结构还是三级结构中。最后,所有被修饰的色氨酸残基都是这些蛋白质中存在的血小板反应蛋白1型重复序列高度保守核心的一部分。由于在大量其他蛋白质中也发现了这个模块,这些结果提示了更多C-甘露糖基化的候选蛋白。