about
Human α-mannosidase produced in transgenic tobacco plants is processed in human α-mannosidosis cell lines.A mutant Synechococcus gene encoding glutamate 1-semialdehyde aminotransferase confers gabaculine resistance when expressed in tobacco plastids.Overexpression of the olive acyl carrier protein gene (OeACP1) produces alterations in fatty acid composition of tobacco leaves.Phaseolin expression in tobacco chloroplast reveals an autoregulatory mechanism in heterologous protein translation.Olive fruits infested with olive fly larvae respond with an ethylene burst and the emission of specific volatiles.Translational fusion of chloroplast-expressed human papillomavirus type 16 L1 capsid protein enhances antigen accumulation in transplastomic tobacco.A plant secretory signal peptide targets plastome-encoded recombinant proteins to the thylakoid membraneRetention of a bean phaseolin/maize gamma-Zein fusion in the endoplasmic reticulum depends on disulfide bond formationPlant endoplasmin supports the protein secretory pathway and has a role in proliferating tissuesRecombinant human GAD65 accumulates to high levels in transgenic tobacco plants when expressed as an enzymatically inactive mutantPlastid proteostasis and heterologous protein accumulation in transplastomic plantsTraffic of human α-mannosidase in plant cells suggests the presence of a new endoplasmic reticulum-to-vacuole pathway without involving the Golgi complex
P50
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P50
description
researcher ORCID ID = 0000-0002-3264-421X
@en
wetenschapper
@nl
name
Andrea Pompa
@ast
Andrea Pompa
@en
Andrea Pompa
@es
Andrea Pompa
@nl
type
label
Andrea Pompa
@ast
Andrea Pompa
@en
Andrea Pompa
@es
Andrea Pompa
@nl
prefLabel
Andrea Pompa
@ast
Andrea Pompa
@en
Andrea Pompa
@es
Andrea Pompa
@nl
P106
P1153
8207343300
P31
P3762
P496
0000-0002-3264-421X