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真核生物磷酸化酶中调控位点的趋同与趋异进化。

Convergent and divergent evolution of regulatory sites in eukaryotic phosphorylases.

作者信息

Hwang P K, Fletterick R J

出版信息

Nature. 1986;324(6092):80-4. doi: 10.1038/324080a0.

Abstract

The activity of many proteins in eukaryotic cells is regulated by reversible covalent phosphorylation. This regulatory modification is often linked to other allosteric controls within the same protein, and such overlapping regulatory mechanisms are best characterized for glycogen phosphorylase (EC 2.4.1.1). Phosphorylases from different organisms or cell types exhibit markedly contrasting regulatory features; this makes the enzyme attractive for studying the evolution of interacting molecular regulatory mechanisms. Extensive biochemical and crystallographic studies of rabbit muscle phosphorylase have led to a characterization of five regulatory regions (phosphorylation, glycogen storage, AMP, glucose and purine sites). Here we report the complete primary structure of the yeast Saccharomyces cerevisiae glycogen phosphorylase, deduced from the sequence of the cloned gene. Regions that are highly conserved between muscle and yeast enzymes include the active site, the glycogen storage site and possibly the glucose and purine inhibition sites. Partial conservation of the residues involved in AMP-binding suggests a binding site for the yeast enzyme inhibitor, glucose 6-phosphate. Other parts of the AMP site and the intersubunit contacts involved in AMP allostery are disrupted in the yeast enzyme by extreme sequence divergence. The poor alignment of amino termini and lack of homology at phosphorylation sites indicate that regulation by reversible phosphorylation evolved independently in yeast and vertebrate phosphorylases.

摘要

真核细胞中许多蛋白质的活性受可逆共价磷酸化作用调控。这种调控修饰常常与同一蛋白质内的其他变构控制相关联,而糖原磷酸化酶(EC 2.4.1.1)对这种重叠调控机制的特征描述最为详尽。来自不同生物体或细胞类型的磷酸化酶表现出明显不同的调控特性;这使得该酶成为研究相互作用分子调控机制进化的理想对象。对兔肌肉磷酸化酶进行的广泛生化和晶体学研究已确定了五个调控区域(磷酸化、糖原储存、AMP、葡萄糖和嘌呤位点)。在此,我们报告了从克隆基因序列推导出来的酿酒酵母糖原磷酸化酶的完整一级结构。肌肉和酵母酶之间高度保守的区域包括活性位点、糖原储存位点以及可能的葡萄糖和嘌呤抑制位点。参与AMP结合的残基部分保守,这表明酵母酶抑制剂6-磷酸葡萄糖存在一个结合位点。酵母酶中AMP位点的其他部分以及参与AMP变构作用的亚基间接触因序列差异过大而被破坏。氨基末端的排列不佳以及磷酸化位点缺乏同源性表明,可逆磷酸化调控在酵母和脊椎动物磷酸化酶中是独立进化的。

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