Mahnke-Zizelman D K, Sabina R L
Department of Biochemistry, Medical College of Wisconsin, 8701 Watertown Plank Road, Milwaukee, WI 53226, USA.
Biochem Biophys Res Commun. 2001 Jul 13;285(2):489-95. doi: 10.1006/bbrc.2001.5180.
The reversible association of AMP deaminase (AMPD, EC 3.5.4.6) with elements of the contractile apparatus is an identified mechanism of enzyme regulation in mammalian skeletal muscle. All three members of the human AMPD multigene family contain coding information for polypeptides with divergent N-terminal and conserved C-terminal domains. In this study, serial N-terminal deletion mutants of up to 111 (AMPD1), 214 (AMPD2), and 126 (AMPD3) residues have been constructed without significant alteration of catalytic function or protein solubility. The entire sets of active enzymes are used to extend our understanding of the contractile protein binding of AMPD. Analysis of the most truncated active enzymes demonstrates that all three isoforms can associate with skeletal muscle actomyosin and suggests that a primary binding domain is located within the C-terminal 635-640 residues of each polypeptide. However, discrete stretches of N-terminal sequence alter this behavior. Residues 54-83 in the AMPD1 polypeptide contribute to a high actomyosin binding capacity of both isoform M spliceoforms, although the exon 2- enzyme exhibits significantly greater association compared to its exon 2+ counterpart. Conversely, residues 129-183 in the AMPD2 polypeptide reduce actomyosin binding of isoform L. In addition, residues 1-48 in the AMPD3 polypeptide dramatically suppress contractile protein binding of isoform E, thus allowing this enzyme to participate in other intracellular interactions.
AMP脱氨酶(AMPD,EC 3.5.4.6)与收缩装置元件的可逆结合是哺乳动物骨骼肌中已确定的酶调节机制。人类AMPD多基因家族的所有三个成员都包含具有不同N端和保守C端结构域的多肽编码信息。在本研究中,构建了多达111个残基(AMPD1)、214个残基(AMPD2)和126个残基(AMPD3)的连续N端缺失突变体,而催化功能或蛋白质溶解度没有明显改变。使用整套活性酶来扩展我们对AMPD与收缩蛋白结合的理解。对截短程度最高的活性酶的分析表明,所有三种同工型都可以与骨骼肌肌动球蛋白结合,并表明主要结合结构域位于每个多肽的C端635 - 640个残基内。然而,N端序列的离散片段会改变这种行为。AMPD1多肽中的54 - 83位残基有助于两种M同工型剪接体具有高肌动球蛋白结合能力,尽管外显子2 - 酶与其外显子2 +对应物相比表现出明显更强的结合。相反,AMPD2多肽中的129 -