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共生菌群和 CD8+T 细胞塑造了不变自然杀伤 T 细胞的形成。

Commensal microbiota and CD8+ T cells shape the formation of invariant NKT cells.

机构信息

Department of Pathology and Laboratory Medicine, David Geffen School of Medicine, University of California, Los Angeles, CA 90095, USA.

出版信息

J Immunol. 2010 Feb 1;184(3):1218-26. doi: 10.4049/jimmunol.0902620. Epub 2010 Jan 4.

Abstract

Commensal bacteria play an important role in formation of the immune system, but the mechanisms involved are incompletely understood. In this study, we analyze CD1d-restricted invariant NKT (iNKT) cells in germfree mice and in two colonies of C57BL/6 mice termed conventional flora and restricted flora (RF), stably bearing commensal microbial communities of diverse but distinct composition. In germfree mice, iNKT cells were moderately reduced, suggesting that commensal microbiota were partially required for the antigenic drive in maintaining systemic iNKT cells. Surprisingly, even greater depletion of iNKT cell population occurred in RF mice. This was in part attributable to reduced RF levels of intestinal microbial taxa (Sphingomonas spp.) known to express antigenic glycosphingolipid products. However, memory and activated CD8(+) T cells were also expanded in RF mice, prompting us to test whether CD8(+) T cell activity might be further depleting iNKT cells. Indeed, iNKT cell numbers were restored in RF mice bearing the CD8alpha(-/-) genotype or in adult wild-type RF mice acutely depleted with anti-CD8 Ab. Moreover, iNKT cells were restored in RF mice bearing the Prf1(-/-) phenotype, a key component of cytolytic function. These findings indicate that commensal microbiota, through positive (antigenic drive) and negative (cytolytic depletion by CD8(+) T cells) mechanisms, profoundly shape the iNKT cell compartment. Because individuals greatly vary in the composition of their microbial communities, enteric microbiota may play an important epigenetic role in the striking differences in iNKT cell abundance in humans and therefore in their potential contribution to host immune status.

摘要

共生菌在免疫系统的形成中起着重要作用,但其中涉及的机制尚不完全清楚。在这项研究中,我们分析了无菌小鼠和两个 C57BL/6 小鼠群体(常规菌群和限制菌群,RF)中 CD1d 限制的不变自然杀伤 T(iNKT)细胞,这些小鼠稳定地携带具有不同但独特组成的共生微生物群落。在无菌小鼠中,iNKT 细胞数量适度减少,表明共生微生物群落部分需要抗原驱动来维持系统中的 iNKT 细胞。令人惊讶的是,RF 小鼠中 iNKT 细胞群体的耗竭程度更大。这部分归因于肠道微生物类群(Sphingomonas spp.)的 RF 水平降低,已知这些类群表达抗原性糖脂产物。然而,RF 小鼠中的记忆性和激活的 CD8(+) T 细胞也扩增,促使我们测试 CD8(+) T 细胞活性是否可能进一步耗竭 iNKT 细胞。事实上,在携带 CD8alpha(-/-) 基因型的 RF 小鼠或用抗 CD8 Ab 急性耗尽的成年野生型 RF 小鼠中,iNKT 细胞数量得到恢复。此外,在携带 Prf1(-/-) 表型(细胞溶解功能的关键组成部分)的 RF 小鼠中,iNKT 细胞也得到恢复。这些发现表明,共生微生物群通过正向(抗原驱动)和负向(CD8(+) T 细胞的细胞溶解耗竭)机制,深刻地塑造了 iNKT 细胞区室。由于个体之间的微生物群落组成差异很大,肠道微生物群可能在人类中 iNKT 细胞丰度的显著差异中发挥重要的表观遗传作用,因此在其对宿主免疫状态的潜在贡献中发挥重要作用。

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本文引用的文献

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