Science, Volume 304John Michels (Journalist) Science Company, Moses King, 2004 A weekly record of scientific progress. |
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Page 526
... Peptide splicing by the proteasome . Two separate peptide sequences within a protein ( red and blue ) are covalently connected after sequential cleavage steps to generate an MHC class I - binding peptide . In step 1 , the amide bond at ...
... Peptide splicing by the proteasome . Two separate peptide sequences within a protein ( red and blue ) are covalently connected after sequential cleavage steps to generate an MHC class I - binding peptide . In step 1 , the amide bond at ...
Page 588
... peptide sequence . A RTKAWNRQLYPEW TKAWNRQLYPEW RTKAWNRQLYPE ATKAWNRQLYPEW RAKAWNRQLYPEW 41 42 44 RTAAWNRQLYPEW RTKAANRQLYPEW RTKAWARQLYPEW 45 RTKAWNAOLYPEW 46 RTKAWNRALYPEW 47 RTKAWNRQAYPEW 48 RTKAWNROLAPEW 49 RTKAWNRQLYAEW 50 ...
... peptide sequence . A RTKAWNRQLYPEW TKAWNRQLYPEW RTKAWNRQLYPE ATKAWNRQLYPEW RAKAWNRQLYPEW 41 42 44 RTAAWNRQLYPEW RTKAANRQLYPEW RTKAWARQLYPEW 45 RTKAWNAOLYPEW 46 RTKAWNRALYPEW 47 RTKAWNRQAYPEW 48 RTKAWNROLAPEW 49 RTKAWNRQLYAEW 50 ...
Page 589
... peptide produced from about 104 mole- cules of precursor peptide . The extreme sensitiv- ity of CTL , which can recognize target cells presenting fewer than 10 molecules of antigenic peptide , probably explains why such a low - effi ...
... peptide produced from about 104 mole- cules of precursor peptide . The extreme sensitiv- ity of CTL , which can recognize target cells presenting fewer than 10 molecules of antigenic peptide , probably explains why such a low - effi ...
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