4.6 Article

Antigen sensitivity of CD22-specific chimeric TCR is modulated by target epitope distance from the cell membrane

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JOURNAL OF IMMUNOLOGY
卷 180, 期 10, 页码 7028-7038

出版社

AMER ASSOC IMMUNOLOGISTS
DOI: 10.4049/jimmunol.180.10.7028

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资金

  1. NCI NIH HHS [P01 CA018029-320048, P01 CA018029-230041, R01 CA076287, R37 CA033084, R01 CA076287-09, R21 CA117131, CA 33084, R01 CA033084, R37 CA033084-20, R37 CA033084-19, R01 CA076287-05A1, R37 CA033084-24, R01 CA076287-08, R01 CA033084-25A1, CA 18029, R37 CA033084-22, R01 CA076287-07, P01 CA018029-270051, P01 CA018029-240041, P01 CA018029-250041, R01 CA076287-02, R01 CA 76287, R01 CA076287-03, R37 CA033084-17, R21 CA117131-01A1, P01 CA018029-260041, R37 CA033084-18, R21 CA117131-02, R37 CA033084-23, P01 CA018029, R01 CA076287-04, P01 CA018029-22A10041, P01 CA018029-24S10041, R01 CA076287-10, R21 CA 117131, R37 CA033084-21, R01 CA076287-06] Funding Source: Medline
  2. NCRR NIH HHS [P51 RR000166] Funding Source: Medline

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We have targeted CD22 as a novel tumor-associated Ag for recognition by human CTL genetically modified to express chimeric TCR (cTCR) recognizing this surface molecule. CD22-specific cTCR targeting different epitopes of the CD22 molecule promoted efficient lysis of target cells expressing high levels of CD22 with a maximum lytic potential that appeared to decrease as the distance of the target epitope from the target cell membrane increased. Targeting membrane-distal CD22 epitopes with cTCR(+) CTL revealed defects in both degranulation and lytic granule targeting. CD22-specific cTCR(+) CTL exhibited lower levels of maximum lysis and lower Ag sensitivity than CTL targeting CD20, which has a shorter extracellular domain than CD22. This diminished sensitivity was not a result of reduced avidity of Ag engagement, but instead reflected weaker signaling per triggered cTCR molecule when targeting membrane-distal epitopes of CD22. Both of these parameters were restored by targeting a ligand expressing the same epitope, but constructed as a truncated CD22 molecule to approximate the length of a TCR:peptide-MHC complex. The reduced sensitivity of CD22-specific cTCR(+) CTL for Ag-induced triggering of effector functions has potential therapeutic applications, because such cells selectively lysed B cell lymphoma lines expressing high levels of CD22, but demonstrated minimal activity against autologous normal B cells, which express lower levels of CD22. Thus, our results demonstrate that cTCR signal strength, and consequently Ag sensitivity, can be modulated by differential choice of target epitopes with respect to distance from the cell membrane, allowing discrimination between targets with disparate Ag density.

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