首页> 外文期刊>Biology of blood and marrow transplantation: journal of the American Society for Blood and Marrow Transplantation >Host-Derived Serine Protease Inhibitor 6 Provides Granzyme B-Independent Protection of Intestinal Epithelial Cells in Murine Graft-versus-Host Disease
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Host-Derived Serine Protease Inhibitor 6 Provides Granzyme B-Independent Protection of Intestinal Epithelial Cells in Murine Graft-versus-Host Disease

机译:宿主衍生的丝氨酸蛋白酶抑制剂6提供小鼠移植物与宿主病中肠上皮细胞的Granzyme B无关保护

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摘要

Graft-versus-host disease (GVHD) is a serious complication after allogeneic hematopoietic cell transplantation (allo-HCT) that limits the therapeutic potential of this treatment. Host antigen-presenting cells (APCs) play a vital role in activating donor T cells that subsequently use granzyme B (GzmB) and other cytotoxic molecules to damage host normal tissues. Serine protease inhibitor 6 (Spi6), known as the sole endogenous inhibitor of GzmB, has been implicated in protecting T cells and APCs against GzmB-inflicted damage. In this study we used murine models to examine the previously unknown role of host-derived Spi6 in GVHD pathogenesis. Our results indicated that host Spi6 deficiency exacerbated GVHD as evidenced by significantly increased lethality and clinical and histopathologic scores. Using bone marrow chimera system, we found that Spi6 in nonhematopoietic tissue played a dominant role in protecting against GVHD and was significantly upregulated in intestinal epithelial cells after allo-HCT, whereas Spi6 in hematopoietic APCs surprisingly suppressed alloreactive T cell response. Interestingly, the protective effect of Spi6 and its expression in intestinal epithelial cells appeared to be independent of donor-derived GzmB. We used in silico modeling to explore potential targets of Spi6. Interaction tested in silico demonstrated that Spi6 could inhibit caspase-3 and caspase-8 with the same functional loop that inhibits GzmB but was not capable of forming stable interaction with caspase-1 or granzyme A. Using an in vitro co-culture system, we further identified that donor T cell-derived IFN-gamma was important for inducing Spi6 expression in an intestinal epithelial cell line. Altogether, our data indicate that host Spi6 plays a novel, GzmB-independent role in regulating alloreactive T cell response and protecting intestinal epithelial cells. Therefore, enhancing host-derived Spi6 function has the potential to reduce GVHD. (C) 2018 American Society for Blood and Marrow Transplantation.
机译:移植物与宿主疾病(GVHD)是在对同种异体造血细胞移植(ALLO-HCT)限制该处理的治疗潜力的严重并发症。宿主抗原呈递细胞(APCs)在激活供体T细胞中发挥至关重要的作用,随后使用Granzyme B(GZMB)和其他细胞毒性分子来破坏宿主正常组织。丝氨酸蛋白酶抑制剂6(SPI6),称为GZMB的唯一内源性抑制剂,其涉及保护T细胞和APC免受GZMB造成的损伤。在这项研究中,我们使用鼠模型来检查宿主衍生的SPI6在GVHD发病机制中的先前未知作用。我们的结果表明,宿主SPI6缺乏症令人难以置疑的GVHD,如杀伤性和临床和组织病理学分数显着增加。使用骨髓嵌合体系,我们发现非发育组织中的SPI6在保护GVHD中发挥了显着作用,并且在血管内上皮细胞中显着上调,而造血APCs的SPI6令人惊讶地抑制了含有的含有含有的含有含量的抗体T细胞反应。有趣的是,SPI6及其在肠上皮细胞中表达的保护作用似乎与供体衍生的GZMB无关。我们用于Silico建模以探索SPI6的潜在目标。在硅中测试的相互作用证明了SPI6可以用抑制GZMB的相同功能环抑制Caspase-3和Caspase-8,但不能形成与Caspase-1或Granzzyme A的稳定相互作用。使用体外共培养系统,我们进一步确定供体T细胞衍生的IFN-γ对于在肠上皮细胞系中诱导SPI6表达是重要的。完全,我们的数据表明,宿主SPI6在调节占性T细胞响应和保护肠上皮细胞中起着新颖,GZMB的独立作用。因此,增强主机衍生的SPI6函数具有减少GVHD的可能性。 (c)2018年美国血液和骨髓移植学会。

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