Molecular Neurobiology Laboratory, The Salk Institute for Biological Studies, La Jolla, CA, United States.
Razavi Newman Integrative Genomics and Bioinformatics Core, The Salk Institute for Biological Studies, La Jolla, CA, United States.
Front Immunol. 2022 Jul 29;13:960401. doi: 10.3389/fimmu.2022.960401. eCollection 2022.
Many apoptotic thymocytes are generated during the course of T cell selection in the thymus, yet the machinery through which these dead cells are recognized and phagocytically cleared is incompletely understood. We found that the TAM receptor tyrosine kinases Axl and Mer, which are co-expressed by a specialized set of phagocytic thymic macrophages, are essential components of this machinery. Mutant mice lacking Axl and Mer exhibited a marked accumulation of apoptotic cells during the time that autoreactive and nonreactive thymocytes normally die. Unexpectedly, these double mutants also displayed a profound deficit in the total number of highly phagocytic macrophages in the thymus, and concomitantly exhibited diminished expression of TIM-4, CD163, and other non-TAM phagocytic engulfment systems in the macrophages that remained. Importantly, these previously unrecognized deficits were not confined to the thymus, as they were also evident in the spleen and bone marrow. They had pleiotropic consequences for the double mutants, also previously unrecognized, which included dysregulation of hemoglobin turnover and iron metabolism leading to anemia.
在胸腺中 T 细胞选择的过程中会产生许多凋亡的胸腺细胞,但对于识别和吞噬这些死亡细胞的机制还不完全了解。我们发现,TAM 受体酪氨酸激酶 Axl 和 Mer 在一组专门的吞噬性胸腺巨噬细胞中共同表达,是该机制的重要组成部分。缺乏 Axl 和 Mer 的突变小鼠在自身反应性和非反应性胸腺细胞正常死亡的时间内,凋亡细胞明显积聚。出乎意料的是,这些双突变小鼠的胸腺中高度吞噬性巨噬细胞的总数也明显减少,并且与之同时,巨噬细胞中 TIM-4、CD163 和其他非-TAM 吞噬性吞噬系统的表达也降低。重要的是,这些以前未被识别的缺陷不仅限于胸腺,在脾脏和骨髓中也同样明显。它们对双突变小鼠产生了多效性影响,这些影响以前也未被认识到,包括血红蛋白周转和铁代谢的失调导致贫血。