Getting the Big Ones to Pack: Crystal Structure of Vitamin K 2 With a Chaperone

ABSTRACT Packing into a crystal lattice is not easy for flexible molecules with an irregular shape, as all molecules have to adopt the same conformation in order to fit into the same position of a well‐ordered lattice. When numerous conformations are populated at the crystallization temperature, crystal growth can be impaired. The larger and more flexible the analyte to be crystallized, the greater the challenge to obtain single crystals suitable for x‐ray crystallography. Here we show how vitamin K 2 , a natural product with a rigid, bicyclic menaquinone head group and a long flexible terpenoid chain, can be crystallized. A second‐generation chaperone and an optimized protocol gave co‐crystals that diffract to a resolution of 0.8 Å. The chaperone employed was 1,3,5,7‐tetrakis(2‐fluoro‐4‐methoxyphenyl)adamantane (TFM). The protocol involved seeding with crystals selected from the conglomerate of an initial run, and a three‐stage temperature protocol. The x‐ray crystal structure shows layers of chaperones and vitamin K 2 molecules, with back‐folding of the terpene chains of the latter. Together with another structure showing layers of chaperone and solvent, this confirms that tetraaryladamantanes can facilitate crystallization in more ways than by just filling voids in their packing arrangements.

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Journal
Chemistry - A European Journal
Published
2026-10-06
DOI
https://doi.org/10.1002/chem.71741
Primary Topic
Enzyme Structure and Function
Type
article
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article

Getting the Big Ones to Pack: Crystal Structure of Vitamin K 2 With a Chaperone

Clemens Richert, Johanna Osterbrink, Tim Berking, Jan Hartenfels et al.
Chemistry - A European Journal
Enzyme Structure and Function
article

Getting the Big Ones to Pack: Crystal Structure of Vitamin K 2 With a Chaperone

Clemens Richert, Johanna Osterbrink, Tim Berking, Jan Hartenfels, Carsten Wolf, Greta Lília Runge‐Seither
article en

Abstract

ABSTRACT Packing into a crystal lattice is not easy for flexible molecules with an irregular shape, as all molecules have to adopt the same conformation in order to fit into the same position of a well‐ordered lattice. When numerous conformations are populated at the crystallization temperature, crystal growth can be impaired. The larger and more flexible the analyte to be crystallized, the greater the challenge to obtain single crystals suitable for x‐ray crystallography. Here we show how vitamin K 2 , a natural product with a rigid, bicyclic menaquinone head group and a long flexible terpenoid chain, can be crystallized. A second‐generation chaperone and an optimized protocol gave co‐crystals that diffract to a resolution of 0.8 Å. The chaperone employed was 1,3,5,7‐tetrakis(2‐fluoro‐4‐methoxyphenyl)adamantane (TFM). The protocol involved seeding with crystals selected from the conglomerate of an initial run, and a three‐stage temperature protocol. The x‐ray crystal structure shows layers of chaperones and vitamin K 2 molecules, with back‐folding of the terpene chains of the latter. Together with another structure showing layers of chaperone and solvent, this confirms that tetraaryladamantanes can facilitate crystallization in more ways than by just filling voids in their packing arrangements.

Chemistry - A European Journal
University of Stuttgart (DE), Bruker (Germany) (DE)
Openalex Percentile: Top 27%
Enzyme Structure and Function
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Getting the Big Ones to Pack: Crystal Structure of Vitamin K 2 With a Chaperone — Clemens Richert, Johanna Osterbrink, et al. · Chemistry - A European Journal (2026) | TGRS Research Map | TGRS