Faye L, Sturm A, Bollini R, Vitale A, Chrispeels M J
Eur J Biochem. 1986 Aug 1;158(3):655-61. doi: 10.1111/j.1432-1033.1986.tb09803.x.
Phytohemagglutinin (PHA), the glycoprotein lectin of Phaseolus vulgaris has two types of asparagine-linked oligosaccharides per polypeptide: a high-mannose chain with the formula (Man)8-9(GlcNAc)2 on Asn12 and a modified chain with fewer mannose residues and additional fucose and xylose residues on Asn60. Glycosylation of PHA is a cotranslational process, which occurs in the endoplasmic reticulum, and newly synthesized PHA has two high-mannose chains. Transport of PHA to the protein bodies via the Golgi complex is accompanied by the modification of one of the two high-mannose chains. Why is only one chain modified, while the other remains in the high-mannose configuration? By determining the effect of digestion with various glycosidases (alpha-mannosidase, endo-beta-N-acetylglucosaminidase H and endo-beta-N-acetylglucosaminidase F) on native and denatured PHA we obtained evidence consistent with the interpretation that the accessibility of oligosaccharide chains to modifying enzymes is of major importance in determining whether a high-mannose chain becomes modified or not. The high-mannose chain of mature undenatured PHA is only partially accessible to glycosidases, while PHA obtained from the endoplasmic reticulum has one high-mannose chain, which is readily accessible to alpha-mannosidase and endoglycosidases H and F. We show that this readily accessible chain is in the same position on the polypeptide (Asn60) as the modified oligosaccharide on mature PHA. Thus, accessibility of the oligosaccharide side-chains to processing enzymes in the Golgi determines whether a particular oligosaccharide side-chain is processed or not.
植物血凝素(PHA)是菜豆的糖蛋白凝集素,每个多肽链有两种天冬酰胺连接的寡糖:天冬酰胺12位上的一个高甘露糖链,分子式为(Man)8-9(GlcNAc)2,以及天冬酰胺60位上的一个修饰链,其甘露糖残基较少,还有额外的岩藻糖和木糖残基。PHA的糖基化是一个共翻译过程,发生在内质网中,新合成的PHA有两条高甘露糖链。PHA通过高尔基体复合体运输到蛋白体的过程伴随着两条高甘露糖链之一的修饰。为什么只有一条链被修饰,而另一条链仍保持高甘露糖构型呢?通过测定用各种糖苷酶(α-甘露糖苷酶、内切β-N-乙酰葡糖胺糖苷酶H和内切β-N-乙酰葡糖胺糖苷酶F)消化天然和变性PHA的效果,我们获得的证据支持这样的解释:寡糖链对修饰酶的可及性在决定高甘露糖链是否被修饰方面至关重要。成熟未变性PHA的高甘露糖链仅部分可被糖苷酶作用,而从内质网获得的PHA有一条高甘露糖链,它很容易被α-甘露糖苷酶以及内切糖苷酶H和F作用。我们发现这条容易被作用的链在多肽链上的位置(天冬酰胺60)与成熟PHA上修饰的寡糖相同。因此,寡糖侧链在高尔基体中对加工酶的可及性决定了特定的寡糖侧链是否被加工。