Mier-Aguilar Carlos A, Cashman Kevin S, Raman Chander, Soldevila Gloria
Departamento de Inmunología, Instituto de Investigaciones Biomédicas, Universidad Nacional Autónoma de México, Ciudad de México, México.
Division of Clinical Immunology and Rheumatology, Department of Microbiology, University of Alabama at Birmingham, Birmingham, AL, United States of America.
PLoS One. 2016 Dec 28;11(12):e0168155. doi: 10.1371/journal.pone.0168155. eCollection 2016.
CD5 is well recognized for its importance in thymic selection. Although this property of CD5 has been attributed to its ITIM-domain dependent regulation of TCR-signal strength, the mechanism has not been established. A second major signaling domain within the cytoplasmic tail of CD5 is a CK2 binding/activation domain (CD5-CK2BD). Using a gene-targeted mouse in which the CD5-CK2BD is selectively ablated (CD5-ΔCK2BD), we determined that loss of function of CD5-CK2 signaling in a MHC-II selecting TCR transgenic (OT-II) mouse resulted in decrease in double positive (DP) thymocytes, which correlated with enhanced apoptosis. Remarkably, DP cells expressing high levels of CD5 and CD69 and single positive (CD4+SP) thymocytes were increased in CD5-ΔCK2BD mice indicating that CD5-CK2 signaling regulates positive selection and promotes survival. Consistent with this possibility, we determined that the activation and nuclear localization of ERK as well as apoptosis was greater in thymic populations from OTII CD5-ΔCK2BD mice than OTII CD5-WT mice following injection of OVA323-339-peptide. The mobilization of Ca2+, an early event of TCR activation, was not altered by the loss of CD5-CK2 signaling. Collectively, these data demonstrate that the CD5-CK2 signaling axis regulates positive selection by modulating activation of ERK and promoting survival independent of proximal TCR signals.
CD5因其在胸腺选择中的重要性而广为人知。尽管CD5的这一特性归因于其ITIM结构域对TCR信号强度的依赖性调节,但其机制尚未明确。CD5胞质尾部的第二个主要信号结构域是CK2结合/激活结构域(CD5-CK2BD)。我们使用一种基因靶向小鼠,其中CD5-CK2BD被选择性敲除(CD5-ΔCK2BD),发现在MHC-II选择TCR转基因(OT-II)小鼠中,CD5-CK2信号功能丧失导致双阳性(DP)胸腺细胞减少,这与细胞凋亡增强相关。值得注意的是,在CD5-ΔCK2BD小鼠中,表达高水平CD5和CD69的DP细胞以及单阳性(CD4+SP)胸腺细胞增加,表明CD5-CK2信号调节阳性选择并促进存活。与此可能性一致,我们发现在注射OVA323-339肽后,OTII CD5-ΔCK2BD小鼠胸腺群体中ERK的激活和核定位以及细胞凋亡比OTII CD5-WT小鼠更明显。TCR激活的早期事件Ca2+的动员不受CD5-CK2信号丧失的影响。总体而言,这些数据表明,CD5-CK2信号轴通过调节ERK的激活和促进存活来调节阳性选择,而与近端TCR信号无关。