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心肌细胞特异性过表达人鸟苷三磷酸环化水解酶 I 可预防急性心脏移植排斥反应。

Cardiac myocyte-specific overexpression of human GTP cyclohydrolase I protects against acute cardiac allograft rejection.

机构信息

Department of Surgery, Division of Transplant Surgery, Medical College of Wisconsin, 9200 West Wisconsin Ave., Milwaukee, WI 53226, USA.

出版信息

Am J Physiol Heart Circ Physiol. 2010 Jul;299(1):H88-96. doi: 10.1152/ajpheart.00203.2010. Epub 2010 Apr 23.

Abstract

GTP cyclohydrolase I (GTPCH) is the rate-limiting enzyme for tetrahydrobiopterin (BH(4)) synthesis. Decreases in GTPCH activity and expression have been shown in late stages of acute cardiac rejection, suggesting a deficit in BH(4). We hypothesized that increasing intracellular levels of BH(4) by cardiac myocyte-targeted overexpression of GTPCH would diminish acute cardiac allograft rejection. Transgenic mice overexpressing GTPCH in the heart were generated and crossed on C57BL6 background. Wild-type and transgenic mouse donor hearts were transplanted into BALB/c recipient mice. Left ventricular (LV) function, histological rejection, BH(4) levels, and inflammatory cytokine gene expression (mRNA) were examined. Expression of human GTPCH was documented by PCR, Western analysis, and function by a significant (P < 0.001) increase in cardiac BH(4) levels. GTPCH transgene decreased histological rejection (46%; P < 0.003) and cardiac myocyte injury (eosin autofluorescence; 56%; P < 0.0001) independent of changes in inflammatory cytokine expression or nitric oxide content. GTPCH transgene decreased IL-2 (88%; P < 0.002), IL-1R2 (42%; P < 0.0001), and programmed cell death-1 (67%; P < 0.0001) expression, whereas it increased fms-like tyrosine kinase 3 (156%; P < 0.0001) and stromal-derived factor-1 (2; 190%; P < 0.0001) expression. There was no difference in ejection fraction or fractional shortening; however, LV mass was significantly increased (P < 0.05) only in wild-type grafts. The decreases in LV mass, cardiac injury, and histological rejection support a protective role of cardiac GTPCH overexpression and increased BH(4) synthesis in cardiac allografts. The mechanism of the decreased rejection appears related to decreased T cell proliferation and modulation of immune function by higher expression of genes involved in hematopoietic/stromal cell development and recruitment.

摘要

GTP 环水解酶 I(GTPCH)是四氢生物蝶呤(BH(4))合成的限速酶。在急性心脏排斥反应的晚期,已经观察到 GTPCH 活性和表达降低,表明 BH(4)缺乏。我们假设通过心脏肌细胞靶向过表达 GTPCH 增加细胞内 BH(4)水平会减少急性心脏同种异体移植排斥反应。生成了心脏过表达 GTPCH 的转基因小鼠,并在 C57BL6 背景下进行了杂交。将野生型和转基因小鼠供体心脏移植到 BALB/c 受体小鼠中。检查左心室(LV)功能、组织学排斥、BH(4)水平和炎症细胞因子基因表达(mRNA)。通过 PCR、Western 分析和心脏 BH(4)水平的显著增加(P < 0.001)证明了人 GTPCH 的表达。GTPCH 转基因减少了组织学排斥(46%;P < 0.003)和心肌细胞损伤(嗜曙红细胞自发荧光;56%;P < 0.0001),而不改变炎症细胞因子表达或一氧化氮含量。GTPCH 转基因减少了 IL-2(88%;P < 0.002)、IL-1R2(42%;P < 0.0001)和程序性细胞死亡-1(67%;P < 0.0001)的表达,而增加了 fms 样酪氨酸激酶 3(156%;P < 0.0001)和基质衍生因子-1(2;190%;P < 0.0001)的表达。射血分数或缩短分数没有差异;然而,只有在野生型移植物中 LV 质量显著增加(P < 0.05)。LV 质量、心脏损伤和组织学排斥的减少支持心脏 GTPCH 过表达和心脏同种异体移植物中增加的 BH(4)合成的保护作用。排斥反应减少的机制似乎与 T 细胞增殖减少以及与造血/基质细胞发育和募集相关的基因表达更高有关的免疫功能调节有关。

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