Young Guang-Huar, Chen Han-Min, Lin Chi-Tsai, Tseng Kuang-Ching, Wu Jiann-Shing, Juang Rong-Huay
Department of Biochemical Science and Technology, Institute of Microbiology and Biochemistry, National Taiwan University, AC 2-520, Taipei 106, Taiwan.
Planta. 2006 Feb;223(3):468-78. doi: 10.1007/s00425-005-0103-1. Epub 2005 Sep 3.
A 78-amino acid insertion (L78) is found in the low-affinity type (L-form) of starch phosphorylase (L-SP, EC 2.4.1.1). This insertion blocks the starch-binding site on the L-SP molecule, and it decreases the binding affinity of L-SP toward starch. The computational analysis of the amino acid sequence on L78 predicts several phosphorylation sites at its Ser residues. Indeed, from the immunoblotting results using antibodies against phosphoamino acids, we observed that the purified L-SP from mature sweet potato (Ipomoea batatas) roots is phosphorylated. This observation led us to the detection of a protein kinase activity in the protein fraction of the crude extract from the sweet potato roots. The kinase was partially purified by liquid chromatography, and its native molecular mass was estimated as 338 kDa. An expressed peptide (L78P) containing the essential part of L78 was intensively phosphorylated by the kinase. However, H-SP (the high-affinity isomer of SP lacking the L78 insertion) and the proteolytic modified L-SP, which lost its L78 fragment, could not be phosphorylated. Furthermore, using L78P mutants by site-directed mutagenesis at Ser residues on L78, we demonstrate that only one Ser residue on L78 is phosphorylated by the kinase. These results imply that this kinase is specific to L-SP, or more precisely, to the L78 insertion. The in vitro phosphorylated L-SP shows higher sensitivity to proteolytic modification, but has no change in its kinetic parameters.
在淀粉磷酸化酶的低亲和力型(L型)(L-SP,EC 2.4.1.1)中发现了一个78个氨基酸的插入片段(L78)。该插入片段阻断了L-SP分子上的淀粉结合位点,并降低了L-SP对淀粉的结合亲和力。对L78上氨基酸序列的计算分析预测其丝氨酸残基上有几个磷酸化位点。事实上,通过使用抗磷酸氨基酸抗体的免疫印迹结果,我们观察到从成熟甘薯(Ipomoea batatas)根中纯化的L-SP被磷酸化。这一观察结果促使我们在甘薯根粗提物的蛋白质组分中检测到一种蛋白激酶活性。该激酶通过液相色谱进行了部分纯化,其天然分子量估计为338 kDa。含有L78关键部分的表达肽(L78P)被该激酶强烈磷酸化。然而,H-SP(缺乏L78插入片段的SP的高亲和力异构体)和失去其L78片段的蛋白水解修饰的L-SP不能被磷酸化。此外,通过对L78上丝氨酸残基进行定点诱变使用L78P突变体,我们证明L78上只有一个丝氨酸残基被该激酶磷酸化。这些结果表明该激酶对L-SP具有特异性,或者更准确地说,对L78插入片段具有特异性。体外磷酸化的L-SP对蛋白水解修饰表现出更高的敏感性,但其动力学参数没有变化。