Determinants of Chain Selection and Staggering in Heterotrimeric Collagens: A Comprehensive Review of the Structural Data
Luigi Vitagliano, Nunzianna Doti, Nicole Balasco

TL;DR
This paper reviews structural data to understand how collagen chains are selected and arranged, focusing on non-collagenous regions and using machine learning predictions.
Contribution
The study combines literature, structural databases, and AlphaFold predictions to clarify structural determinants of collagen chain selection and staggering.
Findings
Disulfide bridges and electrostatic interactions are key in fibrillar collagen heterotrimers.
AlphaFold predictions reveal specific domains in type VI collagen involved in chain selection.
Crystallographic studies identify elements of chain selection in type IX collagen.
Abstract
Collagen is a family of large, fibrous biomacromolecules common in animals, distinguished by unique molecular, structural, and functional properties. Despite the relatively low complexity of their sequences and the repetitive conformation of the triple helix, which is the defining feature of this family, unraveling sequence–stability and structure–function relationships in this group of proteins remains a challenging task. Considering the importance of the structural aspects in collagen chain recognition and selection, we reviewed our current knowledge of the heterotrimeric structures of non-collagenous (NC) regions that lack the triple helix sequence motif, Gly-X-Y, and are crucial for the correct folding of the functional states of these proteins. This study was conducted by simultaneously surveying the current literature, mining the structural database, and making predictions of the…
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Taxonomy
TopicsCollagen: Extraction and Characterization · Calcium Carbonate Crystallization and Inhibition · biodegradable polymer synthesis and properties
