生物
组织蛋白酶
组织蛋白酶L
组织蛋白酶D
分子生物学
组织蛋白酶L1
组织蛋白酶B
病毒学
蛋白酵素
病毒
组织蛋白酶O
组织蛋白酶
口蹄疫病毒
口疮病毒
T细胞
抗原
组织蛋白酶H
生物化学
酶
免疫学
免疫系统
作者
M.J.C. van Lierop,Johannes M. van Noort,J. P. A. Wagenaar,Victor P. M. G. Rutten,Jan Langeveld,Rob H. Meloen,E. J. Hensen
标识
DOI:10.1099/0022-1317-75-11-2937
摘要
Cathepsin D and cathepsin B are endosomal/lysosomal proteases that are thought to play a role during in vivo antigen processing, releasing fragments for binding to major histocompatibility complex class II products and subsequent presentation to T cells. Here we treated purified foot-and-mouth disease virus (FMDV) strain A10Holland with both enzymes. Cathepsin D, but not cathepsin B, was shown to release fragments from reduced or non-reduced FMDV under mild conditions in vitro. Twenty-eight predominant cathepsin D-released fragments were purified by HPLC and identified by amino acid composition analysis and sequencing. The unseparated set of fragments produced (the digest) was able to stimulate T cells from eight vaccinated cattle. With respect to the response to intact virus the extent of the response to the digest differed between animals: four animals could be classified as good responders, three as intermediate responders and one as a low responder. Subsequently, we investigated the proliferative T cell response to a large set of synthetic peptides in detail for two animals, one belonging to the group of good responders, the other being the low responder. The peptides covered all 28 cathepsin D-released fragments analysed and also several sequences not recovered from the digest. In this way seven T cell sites could be identified, five of which coincided with cathepsin D-released fragments. The other two T cell sites were VP2[54–72], being a homologue of a T cell site identified for FMDV strain O1K and the N terminus of VP4. Whether the most dominantly recognized T cell site was recovered from the digest or not was shown to be related to the good or low response to the digest. These findings suggest a role for cathepsin D in the release of some but not all T cell-stimulatory fragments from FMDV.
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