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与C链结合的糖原素通过异淀粉酶从蛋白糖原中释放出来,并能够进行自身葡萄糖基化。

C-chain-bound glycogenin is released from proteoglycogen by isoamylase and is able to autoglucosylate.

作者信息

Romero Jorge M, Curtino Juan A

机构信息

Centro de Investigaciones en Química Biológica de Córdoba, UNC-CONICET, Departamento de Química Biológica Dr. Ranwel Caputto, Facultad de Ciencias Químicas, Universidad Nacional de Córdoba, Ciudad Universitaria, 500 Córdoba, Argentina.

出版信息

Biochem Biophys Res Commun. 2003 Jun 13;305(4):811-4. doi: 10.1016/s0006-291x(03)00861-1.

Abstract

Proteoglycogen glycogenin is linked to the glucose residue of the C-chain reducing end of glycogen. We describe for the first time the release by isoamylase and isolation of C-chain-bound glycogenin (C-glycogenin) from proteoglycogen. The treatment of proteoglycogen with alpha-amylase releases monoglucosylated and diglucosylated glycogenin (a-glycogenin) which is able to autoglucosylate. It had been described that isoamylase splits the glucose-glycogenin linkage of fully autoglucosylated glycogenin previously digested with trypsin, releasing the maltosaccharide moiety. It was also described that carbohydrate-free apo-glycogenin shows higher mobility in SDS-PAGE and twice the autoglucosylation capacity of partly glucosylated glycogenin. On the contrary, we found that the C-glycogenin released from proteoglycogen by isoamylolysis shows lower mobility in SDS-PAGE and about half the autoglucosylation acceptor capacity of the partly glucosylated a-glycogenin. This behavior is consistent with the release of maltosaccharide-bound glycogenin instead of apo-glycogenin. No label was split from auto-[14C]glucosylated C-glycogenin or fully auto-[14C]glucosylated a-glycogenin subjected to isoamylolysis without previous trypsinolysis, thus proving no hydrolysis of the maltosaccharide-tyrosine linkage. The ability of C-glycogenin for autoglucosylation would indicate that the size of the C-chain is lower than the average length of the other glycogen chains.

摘要

蛋白糖原糖原素与糖原C链还原端的葡萄糖残基相连。我们首次描述了异淀粉酶从蛋白糖原中释放并分离出C链结合的糖原素(C-糖原素)。用α-淀粉酶处理蛋白糖原会释放出能够自身葡萄糖基化的单葡萄糖基化和双葡萄糖基化糖原素(α-糖原素)。据描述,异淀粉酶可裂解先前用胰蛋白酶消化的完全自身葡萄糖基化糖原素的葡萄糖-糖原素连接,释放出麦芽糖部分。还描述了无碳水化合物的脱辅基糖原素在SDS-PAGE中显示出更高的迁移率,并且其自身葡萄糖基化能力是部分葡萄糖基化糖原素的两倍。相反,我们发现通过异淀粉酶解从蛋白糖原中释放的C-糖原素在SDS-PAGE中显示出较低的迁移率,并且其自身葡萄糖基化受体能力约为部分葡萄糖基化的α-糖原素的一半。这种行为与释放麦芽糖结合的糖原素而非脱辅基糖原素一致。在没有先前胰蛋白酶消化的情况下,对自身[14C]葡萄糖基化的C-糖原素或完全自身[14C]葡萄糖基化的α-糖原素进行异淀粉酶解,没有从其中裂解出标记,从而证明麦芽糖-酪氨酸连接未被水解。C-糖原素自身葡萄糖基化的能力表明C链的大小低于其他糖原链的平均长度。

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