Motor control and cognition deficits associated with protein carbamoylation in food (cassava) cyanogenic poisoning: Neurodegeneration and genomic perspectives

A case-control design determined whether konzo, an upper motoneuron disease linked to food (cassava) toxicity was associated with protein carbamoylation and genetic variations. Exon sequences of thiosulfate sulfurtransferase (TST) or mercaptopyruvate sulfurtransferase (MPST), plasma cyanide detoxifi...

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Veröffentlicht in:Food and chemical toxicology 2021-02, Vol.148, p.111917-111917, Article 111917
Hauptverfasser: Rwatambuga, F.A., Ali, E.R., Bramble, M.S., Gosschalk, J.E., Kim, Morris, Yandju, D.L., Okitundu, L.A., Boivin, M.J., Banea, J.P., Westaway, S.K., Larry, D., Vilain, Eric, Mumba Ngoyi, D., Tshala-Katumbay, D.D.
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Sprache:eng
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Zusammenfassung:A case-control design determined whether konzo, an upper motoneuron disease linked to food (cassava) toxicity was associated with protein carbamoylation and genetic variations. Exon sequences of thiosulfate sulfurtransferase (TST) or mercaptopyruvate sulfurtransferase (MPST), plasma cyanide detoxification rates, and 2D-LC-MS/MS albumin carbamoylation were assessed in 40 children [21 konzo-affected and 19 putatively healthy controls, mean (SD) age: 9.2 (3.0) years] subjected to cognition and motor testing using the Kaufman Assessment Battery and the Bruininks/Oseretsky Test, respectively. Konzo was significantly associated with higher levels of carbamoylated peptides 206–219 (LDELRDEGKASSAK, pep1) after adjusting for age, gender, albumin concentrations and BUN [regression coefficient: 0.03 (95%CI:0.02–0.05), p = 0.01]. Levels of pep1 negatively correlated with performance scores at all modalities of motor proficiency (r = 0.38 to 0.61; all p 
ISSN:0278-6915
1873-6351
DOI:10.1016/j.fct.2020.111917