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新生仔猪早期由微生物驱动的滤泡反应对免疫球蛋白重链V-D-J库的扩增没有贡献。

Early, microbially driven follicular reactions in the neonatal piglet do not contribute to expansion of the immunoglobulin heavy chain V-D-J repertoire.

作者信息

Wilson Stephen, Norton Pam, Leigh James, Bailey Michael

机构信息

Division of Molecular and Cellular Biology, Department of Clinical Veterinary Science, University of Bristol, Langford House, Bristol, United Kingdom.

出版信息

Vet Immunol Immunopathol. 2007 Jul 15;118(1-2):105-12. doi: 10.1016/j.vetimm.2007.04.018. Epub 2007 May 5.

DOI:10.1016/j.vetimm.2007.04.018
PMID:17560662
Abstract

Selective microbial colonisation of germ-free piglets is reported to result in expansion of immunoglobulin V(H)- and D(H)-segment usage from an initially limited repertoire. Here, the response of the palatine tonsil to microbial colonisation was compared in age-matched conventionally reared and germ-free piglets. At 3 and 5 days after birth an expansion in the B-cell follicle area was observed in the conventional, microbially colonised animals, which was not seen in the germ-free piglets. Consistent with this observation, sequencing of re-arranged heavy chain V-D-J units demonstrated accumulation of point mutations indicating somatic hypermutation in the conventional, microbially colonised piglets but not in the germ-free animals. However, V(H)- and D(H)-segment usage and CDR3 length did not differ between the groups. The results suggest that the follicle reaction observed occurs in response to microbial challenge, involves proliferation and somatic hypermutation of B-cells but does not expand repertoire or generate classical, isotype-switched memory B-cells. We suggest that microbial colonisation of neonatal piglets drives immunological competence in two stages: first, an antigen non-specific, follicular reaction which expands immunological compartments; and second, microbe driven changes in V-segment usage which expand immunological repertoire.

摘要

据报道,无菌仔猪的选择性微生物定植会导致免疫球蛋白V(H)和D(H)区段的使用从最初有限的库中扩展。在此,对年龄匹配的常规饲养仔猪和无菌仔猪腭扁桃体对微生物定植的反应进行了比较。在出生后3天和5天,在常规微生物定植的动物中观察到B细胞滤泡区域扩大,而无菌仔猪中未观察到。与该观察结果一致,重排重链V-D-J单位的测序表明,在常规微生物定植的仔猪中存在点突变积累,表明发生了体细胞超突变,而无菌动物中则没有。然而,两组之间V(H)和D(H)区段的使用以及CDR3长度没有差异。结果表明,观察到的滤泡反应是对微生物挑战的反应,涉及B细胞的增殖和体细胞超突变,但不会扩展库或产生经典的、同种型转换的记忆B细胞。我们认为,新生仔猪的微生物定植分两个阶段驱动免疫能力:第一,抗原非特异性的滤泡反应,扩大免疫区室;第二,微生物驱动的V区段使用变化,扩大免疫库。

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