TY - JOUR
T1 - Mannosidase 2, alpha 1 deficiency is associated with ricin resistance in embryonic stem (ES) cells
AU - Wang, Wei
AU - Hale, Christine
AU - Goulding, Dave
AU - Haslam, Stuart M.
AU - Tissot, Bérangère
AU - Lindsay, Christopher
AU - Michell, Stephen
AU - Titball, Rick
AU - Yu, Jun
AU - Toribio, Ana Luisa
AU - Rossi, Raffaella
AU - Dell, Anne
AU - Bradley, Allan
AU - Dougan, Gordon
PY - 2011/8/23
Y1 - 2011/8/23
N2 - Host gene products required for mediating the action of toxins are potential targets for reversing or controlling their pathogenic impact following exposure. To identify such targets libraries of insertional gene-trap mutations generated with a PiggyBac transposon in Blm-deficient embryonic stem cells were exposed to the plant toxin, ricin. Resistant clones were isolated and genetically characterised and one was found to be a homozygous mutant of the mannosidase 2, alpha 1 (Man2α1) locus with a matching defect in the homologous allele. The causality of the molecular lesion was confirmed by removal of the transposon following expression of PB-transposase. Comparative glycomic and lectin binding analysis of the Man2α1 (-/-) ricin resistant cells revealed an increase in the levels of hybrid glycan structures and a reduction in terminal β-galactose moieties, potential target receptors for ricin. Furthermore, naïve ES cells treated with inhibitors of the N-linked glycosylation pathway at the mannosidase 2, alpha 1 step exhibited either full or partial resistance to ricin. Therefore, we conclusively identified mannosidase 2, alpha 1 deficiency to be associated with ricin resistance.
AB - Host gene products required for mediating the action of toxins are potential targets for reversing or controlling their pathogenic impact following exposure. To identify such targets libraries of insertional gene-trap mutations generated with a PiggyBac transposon in Blm-deficient embryonic stem cells were exposed to the plant toxin, ricin. Resistant clones were isolated and genetically characterised and one was found to be a homozygous mutant of the mannosidase 2, alpha 1 (Man2α1) locus with a matching defect in the homologous allele. The causality of the molecular lesion was confirmed by removal of the transposon following expression of PB-transposase. Comparative glycomic and lectin binding analysis of the Man2α1 (-/-) ricin resistant cells revealed an increase in the levels of hybrid glycan structures and a reduction in terminal β-galactose moieties, potential target receptors for ricin. Furthermore, naïve ES cells treated with inhibitors of the N-linked glycosylation pathway at the mannosidase 2, alpha 1 step exhibited either full or partial resistance to ricin. Therefore, we conclusively identified mannosidase 2, alpha 1 deficiency to be associated with ricin resistance.
UR - http://www.scopus.com/inward/record.url?scp=80051969527&partnerID=8YFLogxK
U2 - 10.1371/journal.pone.0022993
DO - 10.1371/journal.pone.0022993
M3 - Article
C2 - 21886775
AN - SCOPUS:80051969527
VL - 6
JO - PLoS ONE
JF - PLoS ONE
SN - 1932-6203
IS - 8
M1 - e22993
ER -