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磷酸化酶激酶的调节性α亚基可能直接参与糖原磷酸化酶的结合。

The regulatory alpha subunit of phosphorylase kinase may directly participate in the binding of glycogen phosphorylase.

作者信息

Andreeva I E, Rice N A, Carlson G M

机构信息

Bach Institute of Biochemistry, Russian Academy of Sciences, Moscow, 117071 Russia.

出版信息

Biochemistry (Mosc). 2002 Oct;67(10):1197-202. doi: 10.1023/a:1020927726884.

Abstract

The yeast two-hybrid screen has been used to identify potential regions of interaction of the largest regulatory subunit, alpha, of phosphorylase kinase (PhK) with two fragments of its protein substrate, glycogen phosphorylase b (Phb). One fragment, corresponding to residues 17-484 (PhbN'), contained the regulatory domain of the protein, but in missing the first 16 residues was devoid of the sole phosphorylation site of Phb, Ser14; the second fragment corresponded to residues 485-843 (PhbC) and contained the catalytic domain of Phb. Truncation fragments of the alpha subunit were screened for interactions against these two substrate fragments. PhbC was not found to interact with any alpha constructs; however, PhbN' interacted with a region of alpha (residues 864-1014) that is near the phosphorylatable region of that subunit. PhbN' was also screened for interactions against a variety of fragments of the catalytic gamma subunit of PhK; however, no interactions were detected, even with full-length gamma. Our results support the idea that amino acid residues proximal to the convertible serine of Phb are important for its specific interaction with the catalytic subunit of PhK, but that regions distinct from the convertible serine residue of Phb and from the catalytic domain of PhK may also be involved in the interaction of these two proteins.

摘要

酵母双杂交筛选已被用于鉴定磷酸化酶激酶(PhK)最大调节亚基α与其蛋白质底物糖原磷酸化酶b(Phb)的两个片段之间潜在的相互作用区域。一个片段对应于第17 - 484位残基(PhbN'),包含该蛋白质的调节结构域,但由于缺少前16个残基,没有Phb唯一的磷酸化位点Ser14;第二个片段对应于第485 - 843位残基(PhbC),包含Phb的催化结构域。针对这两个底物片段筛选α亚基的截短片段之间的相互作用。未发现PhbC与任何α构建体相互作用;然而,PhbN'与α亚基中靠近该亚基可磷酸化区域的一个区域(第864 - 1014位残基)相互作用。还针对PhK催化γ亚基的各种片段筛选PhbN'之间的相互作用;然而,即使与全长γ亚基也未检测到相互作用。我们的结果支持这样的观点,即Phb可转化丝氨酸附近的氨基酸残基对其与PhK催化亚基的特异性相互作用很重要,但Phb可转化丝氨酸残基和PhK催化结构域之外的区域也可能参与这两种蛋白质的相互作用。

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