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信号依赖性 E 蛋白 HEBAlt 通过 YYY 基序的调节是 T 细胞发育过程中进展所必需的。

Regulation of the Signal-Dependent E Protein HEBAlt Through a YYY Motif Is Required for Progression Through T Cell Development.

机构信息

Biological Sciences, Sunnybrook Research Institute, Toronto, ON, Canada.

Department of Immunology, University of Toronto, Toronto, ON, Canada.

出版信息

Front Immunol. 2022 Aug 3;13:848577. doi: 10.3389/fimmu.2022.848577. eCollection 2022.

Abstract

The E protein transcription factors E2A and HEB are critical for many developmental processes, including T cell development. We have shown that the locus gives rise to two distinct HEB proteins, with alternative (HEBAlt) and canonical (HEBCan) N-terminal domains, which are co-expressed during early T cell development. While the functional domains of HEBCan have been well studied, the nature of the HEBAlt-specific (Alt) domain has been obscure. Here we provide compelling evidence that the Alt domain provides a site for the molecular integration of cytokine signaling and E protein activity. Our results indicate that phosphorylation of a unique YYY motif in the Alt domain increases HEBAlt activity by 10-fold, and that this increase is dependent on Janus kinase activity. To enable studies of HEBAlt in the T cell context, we generated ALT-Tg mice, which can be induced to express a HA-tagged HEBAlt coding cassette in the presence of Cre recombinases. Analysis of ALT-Tg mice on the Vav-iCre background revealed a minor change in the ratio of ISP cells to CD8+ SP cells, and a mild shift in the ratio of T cells to B cells in the spleen, but otherwise the thymus, spleen, and bone marrow lymphocyte subsets were comparable at steady state. However, kinetic analysis of T cell development in OP9-DL4 co-cultures revealed a delay in early T cell development and a partial block at the DN to DP transition when HEBAlt levels or activity were increased. We also observed that HEBCan and HEBAlt displayed significant differences in protein stability that were resolved in the thymocyte context. Finally, a proteomic screen identified STAT1 and Xpo1 as potential members of HEBAlt-containing complexes in thymocytes, consistent with JAK-induced activation of HEBAlt accompanied by translocation to the nucleus. Thus, our results show that the Alt domain confers access to multiple layers of post-translational control to HEBAlt that are not available to HEBCan, and thus may serve as a rheostat to tune E protein activity levels as cells move through different thymic signaling environments during T cell development.

摘要

E 蛋白转录因子 E2A 和 HEB 对于许多发育过程至关重要,包括 T 细胞发育。我们已经表明, 基因座产生两种不同的 HEB 蛋白,具有替代(HEBAlt)和规范(HEBCan)N 端结构域,它们在早期 T 细胞发育过程中共同表达。虽然 HEBCan 的功能结构域已经得到了很好的研究,但 HEBAlt 特异性(Alt)结构域的性质一直不清楚。在这里,我们提供了令人信服的证据,证明 Alt 结构域为细胞因子信号和 E 蛋白活性的分子整合提供了一个位点。我们的结果表明,Alt 结构域中独特的 YYY 模体的磷酸化将 HEBAlt 活性提高了 10 倍,并且这种增加依赖于 Janus 激酶活性。为了能够在 T 细胞环境中研究 HEBAlt,我们生成了 ALT-Tg 小鼠,在 Cre 重组酶存在的情况下可以诱导表达带有 HA 标签的 HEBAlt 编码盒。在 Vav-iCre 背景下分析 ALT-Tg 小鼠时,发现 ISP 细胞与 CD8+ SP 细胞的比例略有变化,脾脏中 T 细胞与 B 细胞的比例略有变化,但在静止状态下,胸腺、脾脏和骨髓淋巴细胞亚群是可比的。然而,在 OP9-DL4 共培养物中对 T 细胞发育的动力学分析表明,当 HEBAlt 水平或活性增加时,早期 T 细胞发育延迟,并且在 DN 到 DP 过渡处部分受阻。我们还观察到 HEBCan 和 HEBAlt 在蛋白质稳定性方面存在显著差异,这些差异在胸腺细胞环境中得到解决。最后,蛋白质组学筛选鉴定出 STAT1 和 Xpo1 是胸腺细胞中包含 HEBAlt 复合物的潜在成员,这与 JAK 诱导的 HEBAlt 激活以及随后向细胞核易位一致。因此,我们的结果表明,Alt 结构域赋予 HEBAlt 访问多种翻译后控制的途径,而 HEBCan 则无法访问,因此在 T 细胞发育过程中,细胞通过不同的胸腺信号环境时,它可能作为一个变阻器来调节 E 蛋白活性水平。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5ea5/9385190/bb7a932b7221/fimmu-13-848577-g001.jpg

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