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胶原蛋白脯氨酰4-羟化酶四聚体和二聚体对肽底物的Km值随链长增加呈现相同程度的降低:四聚体中两个催化位点之一发生突变会使酶活性丧失超过一半。

Collagen prolyl 4-hydroxylase tetramers and dimers show identical decreases in Km values for peptide substrates with increasing chain length: mutation of one of the two catalytic sites in the tetramer inactivates the enzyme by more than half.

作者信息

Kukkola Liisa, Koivunen Peppi, Pakkanen Outi, Page Antony P, Myllyharju Johanna

机构信息

Collagen Research Unit, Biocenter Oulu and Department of Medical Biochemistry and Molecular Biology, University of Oulu, FIN-90014 Oulu, Finland.

出版信息

J Biol Chem. 2004 Apr 30;279(18):18656-61. doi: 10.1074/jbc.M401514200. Epub 2004 Feb 25.

Abstract

The collagen prolyl 4-hydroxylases (collagen P4Hs, EC 1.14.11.2) play a key role in the synthesis of the extracellular matrix. The vertebrate enzymes are alpha(2)beta(2) tetramers, the beta subunit being identical to protein disulfide isomerase (PDI). The main Caenorhabditis elegans collagen P4H form is an unusual PHY-1/PHY-2/(PDI)(2) mixed tetramer consisting of two types of catalytic alpha subunit, but the PHY-1 and PHY-2 polypeptides also form active PHY/PDI dimers. The lengths of peptide substrates have a major effect on their interaction with the P4H tetramers, the K(m) values decreasing markedly with increasing chain length. This phenomenon has been explained in terms of processive binding of the two catalytic subunits to long peptides. We determined here the K(m) values of a collagen P4H having two catalytic sites, the C. elegans mixed tetramer, and a form having only one such site, the PHY-1/PDI dimer, for peptides of varying lengths. All the K(m) values of the PHY-1/PDI dimer were found to be about 1.5-2.5 times those of the tetramer, but increasing peptide length led to identical decreases in the values of both enzyme forms. The K(m) for a nonhydroxylated collagen fragment with 33 -X-Y-Gly-triplets but only 11 -X-Pro-Gly-triplets was found to correspond to the number of the former rather than the latter. To study the individual roles of the two catalytic sites in a tetramer, we produced mutant PHY-1/PHY-2/(PDI)(2) tetramers in which binding of the Fe(2+) ion or 2-oxoglutarate to one of the two catalytic sites was prevented. The activities of the mutant tetramers decreased to markedly less than 50% of that of the wild type, being about 5-10% and 20-30% with the enzymes having one of the two Fe(2+)-binding sites or 2-oxoglutarate-binding sites inactivated, respectively, while the K(m) values for these cosubstrates or peptide substrates were not affected. Our data thus indicate that although collagen P4Hs do not act on peptide substrates by a processive mechanism, prevention of hydroxylation at one of the two catalytic sites in the tetramer impairs the function of the other catalytic site.

摘要

胶原蛋白脯氨酰4-羟化酶(胶原蛋白P4Hs,EC 1.14.11.2)在细胞外基质的合成中起关键作用。脊椎动物的这种酶是α(2)β(2)四聚体,β亚基与蛋白二硫键异构酶(PDI)相同。秀丽隐杆线虫主要的胶原蛋白P4H形式是一种不寻常的PHY-1/PHY-2/(PDI)₂混合四聚体,由两种催化α亚基组成,但PHY-1和PHY-2多肽也能形成有活性的PHY/PDI二聚体。肽底物的长度对它们与P4H四聚体的相互作用有重大影响,Kₘ值随着链长增加而显著降低。这种现象已根据两个催化亚基与长肽的持续性结合来解释。我们在此测定了具有两个催化位点的胶原蛋白P4H(秀丽隐杆线虫混合四聚体)以及仅具有一个这样位点的形式(PHY-1/PDI二聚体)对不同长度肽的Kₘ值。发现PHY-1/PDI二聚体的所有Kₘ值约为四聚体的1.5 - 2.5倍,但增加肽的长度会导致两种酶形式的值出现相同程度的降低。对于具有33个-X-Y-Gly-三联体但只有11个-X-Pro-Gly-三联体的非羟化胶原蛋白片段,其Kₘ值对应于前者的数量而非后者。为了研究四聚体中两个催化位点的各自作用,我们制备了突变的PHY-1/PHY-2/(PDI)₂四聚体,其中Fe²⁺离子或2-氧代戊二酸与两个催化位点之一的结合被阻止。突变四聚体的活性显著降低至不到野生型的50%,当使两个Fe²⁺结合位点或2-氧代戊二酸结合位点之一失活的酶分别作用时,活性约为5 - 10%和20 - 30%,而这些共底物或肽底物的Kₘ值不受影响。因此,我们的数据表明,尽管胶原蛋白P4Hs不以持续性机制作用于肽底物,但阻止四聚体中两个催化位点之一的羟化会损害另一个催化位点的功能。

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