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Sylvie Le Gall, Pamela Stamegna, Bruce D. Walker
Published in Volume 117, Issue 11
J Clin Invest. 2007; 117(11):3563–3575 doi:10.1172/JCI32047
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Figure 6
Transient peptide transfection endogenously replicates the effect of portable flanking sequences on epitope processing observed with in vitro degradation assays.

(A) HeLa-A3 cells were transfected with Gag 17-mer by osmotic loading (black bars) or without osmotic shock (gray bars) and used as targets with RK9- or KK9-specific CTLs. Similar results were obtained with HLA-A3 B cells (not shown). (B) Cells were preincubated with serum-free medium (black bar), MG132 (10 μM; dark gray bar), butabindide (150 μM; light gray bar), bestatin (120 μM; white bar) before transfection by osmotic loading and throughout the 51Cr assay experiment with RK9-specific CTLs. (C) HeLa A3 cells were transfected by osmotic loading with WT-ATK9-WT (WT, dark gray bar), DOM-ATK9-DOM (DD, black bar), sub-ATK9-sub (ss, light gray bar), DOM-ATK9-sub (Ds, blue bar), sub-ATK9-DOM (sD, yellow bar), DOMe-ATK9-DOM (DeD, green bar), or subI-ATK9-sub (sIs, red bar) or without osmotic loading (shown for DD, white bar). Cells were used as targets in a 51Cr assay with ATK9-specific clone. (D) The lysis percentage of transfected cells was compared with that of HeLa-A3 cells pulsed with defined amounts of ATK9 (as in Figure 1C). 100% was assigned to the amount of pulsed ATK9 required to reach the same lysis as in WT-ATK9-WT–transfected cells (5.8 nM). The equivalent ATK9 in cells transfected with hybrid sequences was calculated similarly. Data are the average of 3 experiments.