Pro-metastatic collagen lysyl hydroxylase dimer assemblies stabilized by Fe<sup>2+</sup>-binding.

Guo, Hou-Fu; Tsai, Chi-Lin; Terajima, Masahiko; Tan, Xiaochao; Banerjee, Priyam; Miller, Mitchell D; Liu, Xin; Yu, Jiang et al. · Nat Commun · 2018

basic_science · Level V

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Abstract

Collagen lysyl hydroxylases (LH1-3) are Fe<sup>2+</sup>- and 2-oxoglutarate (2-OG)-dependent oxygenases that maintain extracellular matrix homeostasis. High LH2 levels cause stable collagen cross-link accumulations that promote fibrosis and cancer progression. However, developing LH antagonists will require structural insights. Here, we report a 2 Å crystal structure and X-ray scattering on dimer assemblies for the LH domain of L230 in Acanthamoeba polyphaga mimivirus. Loop residues in the double-stranded β-helix core generate a tail-to-tail dimer. A stabilizing hydrophobic leucine locks into an aromatic tyrosine-pocket on the opposite subunit. An active site triad coordinates Fe<sup>2+</sup>. The two active sites flank a deep surface cleft that suggest dimerization creates a collagen-binding site. Loss of Fe<sup>2+</sup>-binding disrupts the dimer. Dimer disruption and charge reversal in the cleft increase K<sub>m</sub> and reduce LH activity. Ectopic L230 expression in tumors promotes collagen cross-linking and metastasis. These insights suggest inhibitor targets for fibrosis and cancer.

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