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N-连接寡糖灵活性在溶酶体酶组织蛋白酶L甘露糖磷酸化中的作用

Role of N-linked oligosaccharide flexibility in mannose phosphorylation of lysosomal enzyme cathepsin L.

作者信息

Warner Jason B, Thalhauser Craig, Tao Kai, Sahagian G Gary

机构信息

Department of Physiology, Tufts University School of Medicine, Boston, Massachusetts 02111, USA.

出版信息

J Biol Chem. 2002 Nov 1;277(44):41897-905. doi: 10.1074/jbc.M203097200. Epub 2002 Aug 28.

Abstract

Mannose phosphorylation of N-linked oligosaccharides by UDP-GlcNAc:lysosomal enzyme N-acetylglucosamine-1-phosphotransferase is a key step in the targeting of lysosomal enzymes in mammalian cells and tissues. The selectivity of this process is determined by lysine-based phosphorylation signals shared by lysosomal enzymes of diverse structure and function. By introducing new glycosylation sites at several locations on the surface of mouse procathepsin L and modeling oligosaccharide conformations for sites that are phosphorylated, it was shown that the inherent flexibility of N-linked oligosaccharides can account for the specificity of the transferase for oligosaccharides at different locations on the protein. By using this approach, the physical relationship between the lysine-based signal and the site of phosphorylation of mannose residues was determined. The analysis also revealed the existence of additional independent lysine-based phosphorylation signals on procathepsin L, which account for the low level of phosphorylation observed when the primary Lys-54/Lys-99 signal is ablated. Mutagenesis of residues that surround Lys-54 and Lys-99 and demonstration of mannose phosphorylation of a glycosylated derivative of green fluorescent protein provide strong evidence that the cathepsin L phosphorylation signal is a simple structure composed of as few as two well placed lysine residues.

摘要

UDP - GlcNAc介导的N - 连接寡糖的甘露糖磷酸化:溶酶体酶N - 乙酰葡糖胺 - 1 - 磷酸转移酶是哺乳动物细胞和组织中溶酶体酶靶向定位的关键步骤。这一过程的选择性由结构和功能各异的溶酶体酶共有的基于赖氨酸的磷酸化信号决定。通过在小鼠组织蛋白酶L原表面的多个位置引入新的糖基化位点,并对磷酸化位点的寡糖构象进行建模,结果表明N - 连接寡糖的固有灵活性可以解释转移酶对蛋白质上不同位置寡糖的特异性。通过使用这种方法,确定了基于赖氨酸的信号与甘露糖残基磷酸化位点之间的物理关系。分析还揭示了组织蛋白酶L原上存在额外的独立的基于赖氨酸的磷酸化信号,这解释了在主要的Lys - 54/Lys - 99信号被消除时观察到的低水平磷酸化现象。对围绕Lys - 54和Lys - 99的残基进行诱变,并证明绿色荧光蛋白糖基化衍生物的甘露糖磷酸化,提供了强有力的证据,表明组织蛋白酶L磷酸化信号是一种简单的结构,由少至两个位置合适的赖氨酸残基组成。

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