Ross Christopher C, MacLeod Stewart L, Plaxco Jason R, Froude Jeffrey W, Fink Louis M, Wang Junru, Stites Wesley E, Hauer-Jensen Martin
Departments of Surgery, University of Arkansas for Medical Sciences and Central Arkansas Veterans Healthcare System, Little Rock, Arkansas 72205, USA.
Radiat Res. 2008 Apr;169(4):408-16. doi: 10.1667/RR1148.1.
Normal tissue radiation injury is associated with loss of vascular thromboresistance, notably because of deficient levels of endothelial thrombomodulin (TM). TM is located on the luminal surface of most endothelial cells and has critical anticoagulant and anti-inflammatory functions. Chemical oxidation of a specific methionine residue (Met388) at the thrombin-binding site in TM reduces its main functional activity, i.e., the ability to activate protein C. We examined whether exposure to ionizing radiation affects TM in a similar manner. Full-length recombinant human TM, a construct of epidermal growth factor-like domains 4-6, which are involved in protein C activation, and a synthetic peptide containing the methionine of interest were exposed to gamma radiation in a cell-free system, i.e., a system not confounded by TM turnover or ectodomain shedding. The influence of radiation on functional activity was assessed with the protein C activation assay; formation of a TM-thrombin complex was assessed with surface plasmon resonance (Biacore), and oxidation of Met388 was assessed by HPLC and confirmed by mass spectroscopy. Exposure to radiation caused a dose-dependent reduction in protein C activation, impaired TM-thrombin complex formation, and oxidation of Met388. These results demonstrate that ionizing radiation adversely affects the TM molecule. Our findings may have relevance to normal tissue toxicity in clinical radiation therapy as well as to the development of radiation syndromes in the non-therapeutic radiation exposure setting.
正常组织辐射损伤与血管抗血栓形成能力丧失有关,尤其是由于内皮血栓调节蛋白(TM)水平不足。TM位于大多数内皮细胞的腔面,具有关键的抗凝和抗炎功能。TM中凝血酶结合位点处特定甲硫氨酸残基(Met388)的化学氧化会降低其主要功能活性,即激活蛋白C的能力。我们研究了暴露于电离辐射是否以类似方式影响TM。将全长重组人TM、参与蛋白C激活的表皮生长因子样结构域4 - 6的构建体以及含有相关甲硫氨酸的合成肽在无细胞系统中暴露于γ辐射,即一个不受TM周转或胞外域脱落干扰的系统。用蛋白C激活试验评估辐射对功能活性的影响;用表面等离子体共振(Biacore)评估TM - 凝血酶复合物的形成,并用高效液相色谱法评估Met388的氧化,并通过质谱法进行确认。暴露于辐射导致蛋白C激活呈剂量依赖性降低、TM - 凝血酶复合物形成受损以及Met388氧化。这些结果表明电离辐射对TM分子产生不利影响。我们的发现可能与临床放射治疗中的正常组织毒性以及非治疗性辐射暴露情况下辐射综合征的发生有关。