Wojczyk Boguslaw S, Takahashi Noriko, Levy Matthew T, Andrews David W, Abrams William R, Wunner William H, Spitalnik Steven L
Department of Pathology, College of Physicians and Surgeons of Columbia University, 630 West 168th Street, New York, NY 10032, USA.
Glycobiology. 2005 Jun;15(6):655-66. doi: 10.1093/glycob/cwi046. Epub 2005 Jan 26.
Rabies glycoprotein (RGP(WT)) contains N-glycosylation sequons at Asn(37), Asn(247), and Asn(319), although Asn(37) is not efficiently glycosylated. To examine N-glycan processing at Asn(247) and Asn(319), full-length glycosylation mutants, RGP(-2-) and RGP(--3), were expressed, and Endo H sensitivity was compared. When the Asn(247) sequon is present alone in RGP(-2-), 90% of its N-glycans are high-mannose type, whereas only 35% of the N-glycans at Asn(319) in RGP(--3) are high-mannose. When both sequons are present in RGP(-23), 87% of the N-glycans are of complex type. The differing patterns of Endo H sensitivity at sequons present individually or together suggests that glycosylation of one sequon affects glycosylation at another, distant sequon. To explore this further, we constructed soluble forms of RGP: RGP(WT)T441His and RGP(--3)T441His. Tryptic glycopeptides from these purified secreted proteins were isolated by HPLC and characterized by a 3D oligosaccharide mapping technique. RGP(WT)T441His had fucosylated, bi- and triantennary complex type glycans at Asn(247) and Asn(319). However, Asn(247) had half as many neutral glycans, more monosialylated glycans, and fewer disialylated glycans when compared with Asn(319). Moreover, when comparing the N-glycans at Asn(319) on RGP(--3)T441His and RGP(WT)T441His, the former had 30% more neutral, 28% more monosialylated, and 33% fewer disialylated glycans. This suggests that the N-glycan at Asn(247) allows additional N-glycan processing to occur at Asn(319), yielding more heavily sialylated bi- and triantennary forms. The mechanism(s) by which glycosylation at one sequon influences N-glycan processing at a distant sequon on the same glycoprotein remains to be determined.
狂犬病糖蛋白(RGP(WT))在天冬酰胺(Asn)37、Asn247和Asn319处含有N - 糖基化序列,尽管Asn37的糖基化效率不高。为了研究Asn247和Asn319处的N - 聚糖加工情况,表达了全长糖基化突变体RGP(-2-)和RGP(--3),并比较了它们对内切糖苷酶H(Endo H)的敏感性。当Asn247序列单独存在于RGP(-2-)中时,其90%的N - 聚糖为高甘露糖型,而RGP(--3)中Asn319处只有35%的N - 聚糖是高甘露糖型。当两个序列都存在于RGP(-23)中时,87%的N - 聚糖为复合型。单独或共同存在的序列对Endo H敏感性的不同模式表明,一个序列的糖基化会影响另一个远处序列的糖基化。为了进一步探究这一点,我们构建了RGP的可溶性形式:RGP(WT)T441His和RGP(--3)T441His。通过高效液相色谱(HPLC)从这些纯化的分泌蛋白中分离出胰蛋白酶消化的糖肽,并采用三维寡糖图谱技术对其进行表征。RGP(WT)T441His在Asn247和Asn319处具有岩藻糖基化的、双天线和三天线复合型聚糖。然而,与Asn319相比,Asn247处的中性聚糖数量减半,单唾液酸化聚糖更多,双唾液酸化聚糖更少。此外,比较RGP(--3)T441His和RGP(WT)T441His上Asn319处的N - 聚糖时,前者的中性聚糖多30%,单唾液酸化聚糖多28%,双唾液酸化聚糖少33%。这表明Asn247处的N - 聚糖允许在Asn319处进行额外的N - 聚糖加工,产生更多高度唾液酸化的双天线和三天线形式。同一糖蛋白上一个序列的糖基化影响远处序列的N - 聚糖加工的机制仍有待确定。