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衔接分子信号淋巴细胞激活分子(SLAM)相关蛋白(SAP)对于涉及 Fyn 酪氨酸激酶的诱导和进展胶原诱导性关节炎的机制是必不可少的。

The adaptor molecule signaling lymphocytic activation molecule (SLAM)-associated protein (SAP) is essential in mechanisms involving the Fyn tyrosine kinase for induction and progression of collagen-induced arthritis.

机构信息

From the Laboratory of Molecular Oncology, Clinical Research Institute of Montréal, Montréal, Québec H2W 1R7, Canada.

出版信息

J Biol Chem. 2013 Nov 1;288(44):31423-36. doi: 10.1074/jbc.M113.473736. Epub 2013 Sep 17.

DOI:10.1074/jbc.M113.473736
PMID:24045941
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3814739/
Abstract

Signaling lymphocytic activation molecule-associated protein (SAP) is an Src homology 2 domain-only adaptor involved in multiple immune cell functions. It has also been linked to immunodeficiencies and autoimmune diseases, such as systemic lupus erythematosus. Here, we examined the role and mechanism of action of SAP in autoimmunity using a mouse model of autoimmune arthritis, collagen-induced arthritis (CIA). We found that SAP was essential for development of CIA in response to collagen immunization. It was also required for production of collagen-specific antibodies, which play a key role in disease pathogenesis. These effects required SAP expression in T cells, not in B cells. In mice immunized with a high dose of collagen, the activity of SAP was nearly independent of its ability to bind the protein tyrosine kinase Fyn and correlated with the capacity of SAP to promote full differentiation of follicular T helper (TFH) cells. However, with a lower dose of collagen, the role of SAP was more dependent on Fyn binding, suggesting that additional mechanisms other than TFH cell differentiation were involved. Further studies suggested that this might be due to a role of the SAP-Fyn interaction in natural killer T cell development through the ability of SAP-Fyn to promote Vav-1 activation. We also found that removal of SAP expression during progression of CIA attenuated disease severity. However, it had no effect on disease when CIA was clinically established. Together, these results indicate that SAP plays an essential role in CIA because of Fyn-independent and Fyn-dependent effects on TFH cells and, possibly, other T cell types.

摘要

信号淋巴细胞激活分子相关蛋白(SAP)是一种仅含有Src 同源 2 结构域的衔接蛋白,参与多种免疫细胞功能。它还与免疫缺陷和自身免疫性疾病有关,如系统性红斑狼疮。在这里,我们使用胶原诱导性关节炎(CIA)的自身免疫性关节炎小鼠模型研究了 SAP 在自身免疫中的作用和机制。我们发现 SAP 对于胶原免疫后 CIA 的发展是必需的。它还需要产生胶原特异性抗体,这在疾病发病机制中起着关键作用。这些作用需要 SAP 在 T 细胞中表达,而不是在 B 细胞中表达。在接受高剂量胶原免疫的小鼠中,SAP 的活性几乎不依赖于其与蛋白酪氨酸激酶 Fyn 结合的能力,而是与 SAP 促进滤泡性辅助 T 细胞(TFH)细胞完全分化的能力相关。然而,在较低剂量的胶原中,SAP 的作用更依赖于 Fyn 结合,这表明除了 TFH 细胞分化之外,还涉及其他机制。进一步的研究表明,这可能是由于 SAP-Fyn 相互作用通过 SAP-Fyn 促进 Vav-1 激活在自然杀伤 T 细胞发育中的作用。我们还发现,在 CIA 进展过程中去除 SAP 表达可减轻疾病严重程度。然而,当 CIA 在临床上确立时,它对疾病没有影响。综上所述,这些结果表明 SAP 在 CIA 中发挥着重要作用,这是由于其对 TFH 细胞的 Fyn 非依赖性和 Fyn 依赖性影响,以及可能对其他 T 细胞类型的影响。

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本文引用的文献

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J Clin Invest. 2013 Mar;123(3):1382-9. doi: 10.1172/JCI66938. Epub 2013 Feb 8.
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Critical role of SAP in progression and reactivation but not maintenance of T cell-dependent humoral immunity.SAP 在 T 细胞依赖性体液免疫的进展和再激活中起关键作用,但对其维持不起作用。
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The receptor Ly108 functions as a SAP adaptor-dependent on-off switch for T cell help to B cells and NKT cell development.受体 Ly108 作为 SAP 衔接蛋白的依赖性开关,调节 T 细胞向 B 细胞和 NKT 细胞发育的辅助作用。
Immunity. 2012 Jun 29;36(6):986-1002. doi: 10.1016/j.immuni.2012.05.016. Epub 2012 Jun 7.
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The adaptor SAP controls NK cell activation by regulating the enzymes Vav-1 and SHIP-1 and by enhancing conjugates with target cells.衔接蛋白 SAP 通过调节酶 Vav-1 和 SHIP-1 并增强与靶细胞的共轭物来控制 NK 细胞的激活。
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Positive and negative signaling through SLAM receptors regulate synapse organization and thresholds of cytolysis.通过 SLAM 受体的正、负信号调节突触组织和细胞溶解的阈值。
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T cell-B cell interactions in primary immunodeficiencies.原发性免疫缺陷病中的 T 细胞-B 细胞相互作用。
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Increased frequency of follicular helper T cells in patients with autoimmune thyroid disease.自身免疫性甲状腺疾病患者滤泡辅助 T 细胞频率增加。
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Functional and epigenetic studies reveal multistep differentiation and plasticity of in vitro-generated and in vivo-derived follicular T helper cells.功能和表观遗传学研究揭示了体外生成和体内衍生滤泡辅助 T 细胞的多步分化和可塑性。
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