循环 CD4+ 记忆 T 细胞的动态和寿命取决于细胞年龄,而不是宿主的年龄。

IF 9.8 1区 生物学 Q1 Agricultural and Biological Sciences PLoS Biology Pub Date : 2024-08-13 eCollection Date: 2024-08-01 DOI:10.1371/journal.pbio.3002380
M Elise Bullock, Thea Hogan, Cayman Williams, Sinead Morris, Maria Nowicka, Minahil Sharjeel, Christiaan van Dorp, Andrew J Yates, Benedict Seddon
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引用次数: 0

摘要

量化记忆 T 细胞群产生和维持的动力学对于确定免疫持续时间的决定因素至关重要。小鼠循环 CD4 效应记忆(TEM)和中枢记忆(TCM)T 细胞的质量和持久性似乎会随着年龄的增长而改变,但目前还不清楚这些变化是由衰老的宿主环境、细胞年龄效应还是两者共同驱动的。在这里,我们结合 DNA 标记方法、已建立的命运图谱系统、新型报告小鼠品系和数学模型来解决这些问题。通过这些方法,我们可以量化年轻小鼠和老年小鼠体内年轻和成熟的循环记忆 CD4 T 细胞亚群的动态变化。我们发现,这些细胞及其后代在TCM和TEM池中停留的时间越长,其持久性就越强。这种行为可能会限制记忆 CD4 T 细胞的多样性,使 TCR 重排偏向于生命早期产生的克隆,但也可能弥补老年期产生的新记忆细胞的功能缺陷。
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The dynamics and longevity of circulating CD4+ memory T cells depend on cell age and not the chronological age of the host.

Quantifying the kinetics with which memory T cell populations are generated and maintained is essential for identifying the determinants of the duration of immunity. The quality and persistence of circulating CD4 effector memory (TEM) and central memory (TCM) T cells in mice appear to shift with age, but it is unclear whether these changes are driven by the aging host environment, by cell age effects, or both. Here, we address these issues by combining DNA labelling methods, established fate-mapping systems, a novel reporter mouse strain, and mathematical models. Together, these allow us to quantify the dynamics of both young and established circulating memory CD4 T cell subsets, within both young and old mice. We show that that these cells and their descendents become more persistent the longer they reside within the TCM and TEM pools. This behaviour may limit memory CD4 T cell diversity by skewing TCR repertoires towards clones generated early in life, but may also compensate for functional defects in new memory cells generated in old age.

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来源期刊
PLoS Biology
PLoS Biology BIOCHEMISTRY & MOLECULAR BIOLOGY-BIOLOGY
CiteScore
15.40
自引率
2.00%
发文量
359
审稿时长
3-8 weeks
期刊介绍: PLOS Biology is the flagship journal of the Public Library of Science (PLOS) and focuses on publishing groundbreaking and relevant research in all areas of biological science. The journal features works at various scales, ranging from molecules to ecosystems, and also encourages interdisciplinary studies. PLOS Biology publishes articles that demonstrate exceptional significance, originality, and relevance, with a high standard of scientific rigor in methodology, reporting, and conclusions. The journal aims to advance science and serve the research community by transforming research communication to align with the research process. It offers evolving article types and policies that empower authors to share the complete story behind their scientific findings with a diverse global audience of researchers, educators, policymakers, patient advocacy groups, and the general public. PLOS Biology, along with other PLOS journals, is widely indexed by major services such as Crossref, Dimensions, DOAJ, Google Scholar, PubMed, PubMed Central, Scopus, and Web of Science. Additionally, PLOS Biology is indexed by various other services including AGRICOLA, Biological Abstracts, BIOSYS Previews, CABI CAB Abstracts, CABI Global Health, CAPES, CAS, CNKI, Embase, Journal Guide, MEDLINE, and Zoological Record, ensuring that the research content is easily accessible and discoverable by a wide range of audiences.
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