Jenkins_2026_Nat.Methods_23_1798

Reference

Title : Overcoming air-water interface-induced artifacts in cryo-EM with protein nanocrates - Jenkins_2026_Nat.Methods_23_1798
Author(s) : Jenkins MC , Bobe D , Johnston JD , Cheung J , Karasawa A , Zimanyi CM , Dermanci O , McManus CT , Finn MG , de Marco A , Kopylov M
Ref : Nat Methods , 23 :1798 , 2026
Abstract :

Contact with the air-water interface can bias the orientation of macromolecules during cryo-electron microscopy sample preparation, leading to uneven sample distribution, preferred orientation and damage to the molecules of interest. To prevent this, we describe a method to encapsulate target proteins within highly hydrophilic, structurally homogeneous and stable protein shells, which we refer to as 'nanocrates' for this purpose. Here we describe the packaging, data acquisition and reconstruction of three proof-of-principle examples, each illuminating a different aspect of the method: apoferritin (demonstrating high-resolution), thyroglobulin (solving a known preferred orientation problem) and 7,8-dihydroneopterin aldolase (a structure previously uncharacterized by cryo-electron microscopy).

PubMedSearch : Jenkins_2026_Nat.Methods_23_1798
PubMedID: 42637978
Gene_locus related to this paper: pig-d1kkb3

Related information

Gene_locus pig-d1kkb3

Citations formats

Jenkins MC, Bobe D, Johnston JD, Cheung J, Karasawa A, Zimanyi CM, Dermanci O, McManus CT, Finn MG, de Marco A, Kopylov M (2026)
Overcoming air-water interface-induced artifacts in cryo-EM with protein nanocrates
Nat Methods 23 :1798

Jenkins MC, Bobe D, Johnston JD, Cheung J, Karasawa A, Zimanyi CM, Dermanci O, McManus CT, Finn MG, de Marco A, Kopylov M (2026)
Nat Methods 23 :1798