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Hypergravity exposure during gestation modifies the TCRβ repertoire of newborn mice

机译:妊娠期间超重力暴露会改变新生小鼠的TCRβ组成

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摘要

During spaceflight, organisms are subjected to mechanical force changes (gravity (G) changes) that affect the immune system. However, gravitational effects on lymphopoiesis have rarely been studied. Consequently, we investigated whether the TCRβ repertoire, created by V(D)J recombination during T lymphopoiesis, is affected by hypergravity exposure during murine development. To address this question, C57BL/6j mice were mated in a centrifuge so that embryonic development, birth and TCRβ rearrangements occurred at 2G. Pups were sacrificed at birth, and their thymus used to quantify transcripts coding for factors required for V(D)J recombination and T lymphopoiesis. We also created cDNA mini-libraries of TCRβ transcripts to study the impact of hypergravity on TCRβ diversity. Our data show that hypergravity exposure increases the transcription of TCRβ chains, and of genes whose products are involved in TCR signaling, and affects the V(D)J recombination process. We also observed that ~85% of the TCRβ repertoire is different between hypergravity and control pups. These data indicate that changing a mechanical force (the gravity) during ontogeny will likely affect host immunity because properties of loops constituting TCR antigen-binding sites are modified in hypergravity newborns. The spectrum of peptides recognized by TCR will therefore likely be different.
机译:在太空飞行期间,生物体会受到影响免疫系统的机械力变化(重力(G)变化)的影响。然而,很少研究重力对淋巴细胞生成的影响。因此,我们研究了在鼠淋巴细胞发育过程中超重力暴露对TCRβ库(由V(D)J重组在T淋巴细胞生成过程中产生)的影响。为了解决这个问题,将C57BL / 6j小鼠在离心机中交配,以便在2G时发生胚胎发育,出生和TCRβ重排。幼崽在出生时被处死,其胸腺用于量化转录本,这些转录本编码了V(D)J重组和T淋巴细胞生成所需的因子。我们还创建了TCRβ转录本的cDNA微型文库,以研究超重力对TCRβ多样性的影响。我们的数据表明,超重力暴露会增加TCRβ链和其产物参与TCR信号传导的基因的转录,并影响V(D)J重组过程。我们还观察到超重力幼犬和对照幼犬之间约有85%的TCRβ差异。这些数据表明,在个体发育过程中改变机械力(重力)可能会影响宿主的免疫力,因为在超重力新生儿中,构成TCR抗原结合位点的环的性质发生了改变。因此,TCR识别的肽谱可能会有所不同。

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