Structure of β‐chitin or parallel chain systems of poly‐β‐(1→4)‐<i>N</i>‐acetyl‐<scp>D</scp>‐glucosamine

1969 Biopolymers 199 citations

Abstract

Abstract The structure of β‐chitin has been reexamined in an X ‐ray diffraction study of the highly crystalline material available from pogonophore tubes. Oriented specimens were prepared by suspending the dispersed deproteinized tube in a fibrin clot which was then stretched into an oriented fiber. The X ‐ray diffraction patterns of pogonophore β‐chitin were explained by proposing that this material consists of a mixture of two structural phases which have been named β‐chitins A and B. This view was confirmed by the preparation of specimens which gave only the diffraction pattern of the A phase by treating the tubes with diaphanol. Both A and B phases gave rise to a series of hydrate structures. The lowest hydrate of β‐chitin A has been studied in detail and shown to consist of an anhydrous system of parallel chitin chains. For this form, the unit cell was monoclinic with dimensions a = 4.85 Å, b = 10.38 Å (fiber axis), c = 9.26 Å, and β = 97.5°, and space group P2 1 . Reasonable agreement was obtained between the observed X ‐ray intensities and those calculated for such a structure. Examination of the β‐chitin of Loligo pen and diatom spines showed that these materials also consist of these A and B phases.

Keywords

ChitinChemistryMonoclinic crystal systemAnhydrousCrystallographyHydrateDiffractionFiber diffractionPolymer chemistryX-ray crystallographyCrystal structureOrganic chemistryChitosanOptics

MeSH Terms

Chemical PhenomenaChemistryChitinEukaryotaHexosaminesModelsStructuralMolluscaPolysaccharidesX-Ray Diffraction

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Publication Info

Year
1969
Type
article
Volume
7
Issue
3
Pages
281-298
Citations
199
Access
Closed

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Cite This

John Blackwell (1969). Structure of β‐chitin or parallel chain systems of poly‐β‐(1→4)‐<i>N</i>‐acetyl‐<scp>D</scp>‐glucosamine. Biopolymers , 7 (3) , 281-298. https://doi.org/10.1002/bip.1969.360070302

Identifiers

DOI
10.1002/bip.1969.360070302
PMID
5771561

Data Quality

Data completeness: 81%