Institute for Cardiovascular and Metabolic Research, School of Biological Sciences, University of Reading, Whiteknights, Reading, Berkshire.
Br J Haematol. 2010 Feb;148(4):627-37. doi: 10.1111/j.1365-2141.2009.07994.x. Epub 2009 Dec 8.
The thiol isomerase enzymes protein disulphide isomerase (PDI) and endoplasmic reticulum protein 5 (ERp5) are released by resting and activated platelets. These re-associate with the cell surface where they modulate a range of platelet responses including adhesion, secretion and aggregation. Recent studies suggest the existence of yet uncharacterised platelet thiol isomerase proteins. This study aimed to identify which other thiol isomerase enzymes are present in human platelets. Through the use of immunoblotting, flow cytometry, cell-surface biotinylation and gene array analysis, we report the presence of five additional thiol isomerases in human and mouse platelets and megakaryocytes, namely; ERp57, ERp72, ERp44, ERp29 and TMX3. ERp72, ERp57, ERp44 and ERp29 are released by platelets and relocate to the cell surface following platelet activation. The transmembrane thiol isomerase TMX3 was also detected on the platelet surface but does not increase following activation. Extracellular PDI is also implicated in the regulation of coagulation by the modulation of tissue factor activity. ERp57 was identified within platelet-derived microparticle fractions, suggesting that ERp57 may also be involved in the regulation of coagulation as well as platelet function. These data collectively implicate the expanding family of platelet-surface thiol isomerases in the regulation of haemostasis.
硫醇异构酶酶蛋白二硫键异构酶 (PDI) 和内质网蛋白 5 (ERp5) 由静止和激活的血小板释放。这些重新与细胞表面结合,在那里它们调节一系列血小板反应,包括粘附、分泌和聚集。最近的研究表明,存在尚未被表征的血小板硫醇异构酶蛋白。本研究旨在确定人类血小板中存在哪些其他硫醇异构酶。通过使用免疫印迹、流式细胞术、细胞表面生物素化和基因阵列分析,我们报告了人类和小鼠血小板和巨核细胞中存在另外五种硫醇异构酶,即 ERp57、ERp72、ERp44、ERp29 和 TMX3。ERp72、ERp57、ERp44 和 ERp29 由血小板释放,并在血小板激活后重新定位到细胞表面。跨膜硫醇异构酶 TMX3 也在血小板表面检测到,但在激活后不会增加。细胞外 PDl 也通过调节组织因子活性参与凝血的调节。在血小板衍生的微粒部分中鉴定出 ERp57,表明 ERp57 也可能参与凝血以及血小板功能的调节。这些数据共同表明不断扩大的血小板表面硫醇异构酶家族在止血调节中的作用。