What is it about?
Fucoxanthin is the orange-brown pigment responsible for the colour of brown algae and diatoms. It is one of the most complex carotenoids in nature, containing an allene, an epoxide, a ketone, and a long polyene chain within a single molecule. Although its chemical connectivity has been known since the 1960s, no one had ever seen its isolated crystal structure. In 1979, a young G. M. Sheldrick attempted to do so. We grew extremely fragile diethyl ether solvate needles that lost solvent within minutes. We then mounted them under ether vapour at 100 K and determined the first small-molecule structure at SPring-8.
Featured Image
Why is it important?
This work demonstrates the ability of modern crystal growth and synchrotron methods to solve the problem of highly unstable, weakly diffracting crystals. Dedicated to the memory of Professor George M. Sheldrick (1942–2025), it turns his initial partial solution into a completed story and establishes a benchmark for the entire allenic xanthophyll family.
Perspectives
The fucoxanthin crystal is more than just a structure; it is a platform. Using precise coordinates, chemists can now calibrate how the allene and the conjugated ketone tune light absorption and energy transfer in fucoxanthin-chlorophyll proteins, thereby guiding artificial photosynthesis. As part of the Early Career Scientists in Structural Science collection, this study shows that even "impossible" natural products can be understood when careful handling meets high-brilliance synchrotron radiation, opening the way for the study of other elusive molecules.
Mao MINOURA
Rikkyo Daigaku
Read the Original
This page is a summary of: Crystal structure of fucoxanthin: resolving a long-standing crystallographic challenge, Acta Crystallographica Section C Structural Chemistry, September 2026, International Union of Crystallography,
DOI: 10.1107/s2053229626008946.
You can read the full text:
Contributors
The following have contributed to this page







