Risteli Maija, Niemitalo Olli, Lankinen Hilkka, Juffer André H, Myllylä Raili
Department of Biochemistry, Biocenter Oulu, University of Oulu, P. O. Box 3000, Fin-90014, University of Oulu, Finland.
J Biol Chem. 2004 Sep 3;279(36):37535-43. doi: 10.1074/jbc.M405638200. Epub 2004 Jun 18.
Lysyl hydroxylase (LH, EC 1.14.11.4) is the enzyme catalyzing the formation of hydroxylysyl residues in collagens and other proteins with collagenous domains. Although lower species, such as Caenorhabditis elegans, have only one LH orthologue, LH activity in higher species, such as human, rat, and mouse, is present in three molecules, LH1, LH2, and LH3, encoded by three different genes. In addition, LH2 is present in two alternatively spliced forms (LH2a, LH2b). To understand the functions of the four molecular forms of LH in vertebrates, we analyzed differences in the binding and hydroxylation of various collagenous peptides by the LH isoforms. Nine-amino acid-long synthetic peptides on Pepspot were used for the binding analysis and an activity assay to measure hydroxylation. Our data with 727 collagenous peptides indicated that a positive charge on the peptide and specific amino acid residues in close proximity to the lysyl residues in the collagenous sequences are the key factors promoting peptide binding to the LH isoforms. The data suggest that the LH binding site is not a deep hydrophobic pocket but is open and hydrophilic where acidic amino acids play an important role in the binding. The data do not indicate strict sequence specificity for the LH isoforms, but the data indicated that there was a clear preference for some sequences to be bound and hydroxylated by a certain isoform.
赖氨酰羟化酶(LH,EC 1.14.11.4)是一种催化胶原蛋白和其他具有胶原结构域的蛋白质中羟赖氨酸残基形成的酶。尽管像秀丽隐杆线虫这样的低等物种只有一种LH同源物,但在高等物种如人类、大鼠和小鼠中,LH活性由三个不同基因编码的三个分子LH1、LH2和LH3体现。此外,LH2以两种可变剪接形式(LH2a、LH2b)存在。为了了解脊椎动物中LH的四种分子形式的功能,我们分析了LH同工型对各种胶原肽的结合和羟化差异。使用Pepspot上的九氨基酸长的合成肽进行结合分析和活性测定以测量羟化作用。我们对727种胶原肽的数据表明,肽上的正电荷以及胶原序列中与赖氨酸残基紧邻的特定氨基酸残基是促进肽与LH同工型结合的关键因素。数据表明,LH结合位点不是一个深的疏水口袋,而是开放且亲水的,其中酸性氨基酸在结合中起重要作用。数据并未表明LH同工型具有严格的序列特异性,但数据表明某些同工型对某些序列的结合和羟化有明显偏好。