: Biosynthesis of collagen molecules, as well as collagenous segments of non-collagen proteins, requires extensive post-translational modifications (PTMs) that confer specific functional and structural properties to tissues and organs. Within collagen polypeptide sequences, lysine residues are subject to a series of PTMs, resulting in hydroxylation and subsequent O-linked glycosylation of their side chains. These modifications are catalyzed by two distinct metalloenzyme families, named LH/PLOD and GLT25D/COLGALT, which alternatively process modified lysine side chains yielding 5-hydroxylysine (LH/PLOD), β-(1,O)-galactosyl-5-hydroxylysine (GLT25D/COLGALT), and α-(1,2)-glucosyl-β-(1,O)-galactosyl-5-hydroxylysine (LH/PLOD). In this chapter, we illustrate strategies to recombinantly produce human full-length LH3/PLOD3 as well as GLT25D1/COLGALT1, verify the quality of these recombinant preparations, and perform direct and indirect assays to evaluate their enzymatic activities in vitro on synthetic collagen peptides and gelatin.

Recombinant Production and Characterization of Human Enzymes Responsible for Collagen Lysine Post-translational Modifications

Mattoteia, Daiana;De Marco, Matteo;Rai, Sristi Raj;Faravelli, Silvia;Scietti, Luigi;Forneris, Federico
2026-01-01

Abstract

: Biosynthesis of collagen molecules, as well as collagenous segments of non-collagen proteins, requires extensive post-translational modifications (PTMs) that confer specific functional and structural properties to tissues and organs. Within collagen polypeptide sequences, lysine residues are subject to a series of PTMs, resulting in hydroxylation and subsequent O-linked glycosylation of their side chains. These modifications are catalyzed by two distinct metalloenzyme families, named LH/PLOD and GLT25D/COLGALT, which alternatively process modified lysine side chains yielding 5-hydroxylysine (LH/PLOD), β-(1,O)-galactosyl-5-hydroxylysine (GLT25D/COLGALT), and α-(1,2)-glucosyl-β-(1,O)-galactosyl-5-hydroxylysine (LH/PLOD). In this chapter, we illustrate strategies to recombinantly produce human full-length LH3/PLOD3 as well as GLT25D1/COLGALT1, verify the quality of these recombinant preparations, and perform direct and indirect assays to evaluate their enzymatic activities in vitro on synthetic collagen peptides and gelatin.
2026
Collagen
Biochemistry & Biophysics focuses on the structure and chemistry of biomolecules and covers all aspects of basic biochemistry/biophysics, including molecular structure, enzyme kinetics and protein-protein interaction; this category also contains cross-disciplinary resources focused on a specific class of biological molecules, e.g., nucleic acids, steroids, magnesium, growth factors, free radicals, bio-membranes, and peptides. Excluded are resources dealing with the application of biochemical techniques to specific topics listed elsewhere in CC/LS. Resources with a strong emphasis on the integration of biochemical pathways (such as signal transduction or molecular motors) at the cellular level are placed in the Cell & Developmental Biology category.
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Comitato scientifico
Inglese
Internazionale
STAMPA
3022
73
98
26
9781071651933
9781071651940
Springer
Enzymatic activity assays; Enzyme; GLT25D/COLGALT; Galactosyltransferase; Glucosyltransferase; LH/PLOD; Lysyl hydroxylase; Post-translational modifications; Protein characterization; Recombinant protein production
https://link.springer.com/protocol/10.1007/978-1-0716-5194-0_4
2 Contributo in Volume::2.1 Contributo in volume (Capitolo o Saggio)
6
268
none
Mattoteia, Daiana; De Marco, Matteo; Rai, Sristi Raj; Faravelli, Silvia; Scietti, Luigi; Forneris, Federico
info:eu-repo/semantics/bookPart
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11571/1558803
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