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egasyn基因影响肝脏中溶酶体β-葡萄糖醛酸酶寡糖的加工过程。

The egasyn gene affects the processing of oligosaccharides of lysosomal beta-glucuronidase in liver.

作者信息

Swank R T, Pfister K, Miller D, Chapman V

出版信息

Biochem J. 1986 Dec 1;240(2):445-54. doi: 10.1042/bj2400445.

Abstract

The accumulation of the relatively large amounts of beta-glucuronidase in microsomal fractions of normal mice depends on formation of complexes with the protein egasyn. Unexpectedly, it was found that the egasyn gene also affects the processing of beta-glucuronidase, which is segregated to lysosomes. In egasyn-positive mice lysosomal beta-glucuronidase from liver has a mean pI of 5.9 with a minor proportion at pI 5.4, whereas in egasyn-negative mice the proportion of the two lysosomal forms is reversed. Combined experiments measuring susceptibility to neuraminidase and to endoglycosidase H and specific binding to Ricinus communis lectin-agarose columns showed that the alterations in isoelectric point were associated with a decrease in complex oligosaccharides of lysosomal beta-glucuronidase in egasyn-positive mice. Since this alteration occurs not only in a congenic strain carrying the Eg0 gene but also in several other inbred strains that are homozygous for this gene, it is considered to be a genuine effect of the Eg gene rather than other genes that might regulate oligosaccharide processing. Also, the alteration is likely to be a result of direct physical interaction of the egasyn protein and lysosomal beta-glucuronidase, since a second lysosomal enzyme, beta-galactosidase, which does not form complexes with egasyn, is unaffected. The results suggest a model in which egasyn not only causes accumulation of beta-glucuronidase in the microsomal compartment but also acts upon the precursor to lysosomal beta-glucuronidase to alter its interaction with trans-Golgi-apparatus processing enzymes.

摘要

正常小鼠微粒体组分中相对大量的β-葡萄糖醛酸酶的积累依赖于与egasyn蛋白形成复合物。出乎意料的是,发现egasyn基因也影响β-葡萄糖醛酸酶的加工过程,该酶被分隔到溶酶体中。在egasyn阳性小鼠中,肝脏溶酶体β-葡萄糖醛酸酶的平均等电点为5.9,较小比例的等电点为5.4,而在egasyn阴性小鼠中,两种溶酶体形式的比例则相反。测量对神经氨酸酶和内切糖苷酶H的敏感性以及与蓖麻凝集素-琼脂糖柱的特异性结合的联合实验表明,等电点的改变与egasyn阳性小鼠溶酶体β-葡萄糖醛酸酶复杂寡糖的减少有关。由于这种改变不仅发生在携带Eg0基因的同基因品系中,也发生在该基因纯合的其他几个近交品系中,因此被认为是Eg基因的真正作用,而不是可能调节寡糖加工的其他基因。此外,这种改变可能是egasyn蛋白与溶酶体β-葡萄糖醛酸酶直接物理相互作用的结果,因为第二种溶酶体酶β-半乳糖苷酶不与egasyn形成复合物,不受影响。结果提出了一个模型,其中egasyn不仅导致β-葡萄糖醛酸酶在微粒体区室中积累,而且作用于溶酶体β-葡萄糖醛酸酶的前体,以改变其与反式高尔基体加工酶的相互作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d07f/1147437/e7210c5ba059/biochemj00266-0135-a.jpg

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