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链脲佐菌素(STZ)介导血清和胰腺骨桥蛋白(OPN)的急性上调:OPN通过抑制STZ诱导的一氧化氮产生发挥新的胰岛保护作用。

Streptozotocin (STZ) mediates acute upregulation of serum and pancreatic osteopontin (OPN): a novel islet-protective effect of OPN through inhibition of STZ-induced nitric oxide production.

作者信息

Katakam A K, Chipitsyna G, Gong Q, Vancha A R, Gabbeta J, Arafat H A

机构信息

Department of Surgery, Pathology, Anatomy and Cell Biology, Thomas Jefferson University, 1015 Walnut Street, Philadelphia, PA 19107, USA.

出版信息

J Endocrinol. 2005 Nov;187(2):237-47. doi: 10.1677/joe.1.06411.

Abstract

Osteopontin (OPN) is a secreted acidic phosphoprotein that binds to a cell-surface integrin-binding motif and is involved in many inflammatory and immune-modulating disorders. There is compelling evidence that soluble OPN can in a variety of situations help cells survive an otherwise lethal insult. In this study we show that OPN is localized in the rat pancreatic islets and ducts. Staining of pancreatic serial sections with islet hormone antibodies showed that all islet cells express OPN. Rats treated with a single dose of streptozotocin (STZ; 50 mg/kg) showed acute upregulation of serum OPN levels and pancreatic OPN mRNA and protein. Serum OPN dropped by the end of day 7 but was still higher than prediabetic levels. Pancreatic mRNA and protein showed a similar pattern. Twenty-four hours after STZ injection, the intensified OPN expression was localized towards the periphery of the islets and surrounded the remaining insulin-positive cells. To explore the significance of OPN acute upregulation, freshly isolated islets were pretreated with OPN (0.15-15 nM) before addition of STZ. OPN significantly reduced the STZ-induced NO levels in the islets through an Arg-Gly-Asp (RGD)-dependent reduction of inducible NO synthase (iNOS) mRNA levels. Addition of OPN to freshly isolated mildly diabetic islets (blood glucose <300 mg/dl) significantly improved their glucose-stimulated insulin secretion and reduced their NO levels. Next we investigated the regulation of OPN in beta-cells. When STZ (5 mM) was added to the beta-cell line RINm5F it significantly increased OPN mRNA levels within 6 h. To distinguish between the effect of STZ and high glucose on OPN transcription, RINm5F cells were transfected with luciferase-labeled rat OPN promoter and treated with STZ (0.05-5 mM) or with glucose (5-25 mM). STZ induced upregulation of OPN promoter activity within 3 h, while high glucose induced upregulation of OPN promoter activity after 48 h. Our data introduce OPN as a novel islet protein that is differentially regulated by STZ and glucose in the islets. OPN initial upregulation after diabetes induction was probably due to STZ-induced toxicity, while maintenance of the high OPN levels might be due to hyperglycemia. The acute induction of OPN after STZ-induced diabetes might represent an endogenous mechanism to protect the islets against STZ-induced cytotoxicity, partly via an RGD-dependent NO regulatory mechanism.

摘要

骨桥蛋白(OPN)是一种分泌型酸性磷蛋白,它能与细胞表面整合素结合基序结合,并参与多种炎症和免疫调节紊乱。有确凿证据表明,在多种情况下,可溶性OPN可帮助细胞在原本致命的损伤中存活下来。在本研究中,我们发现OPN定位于大鼠胰岛和导管。用胰岛激素抗体对胰腺连续切片进行染色显示,所有胰岛细胞均表达OPN。用单剂量链脲佐菌素(STZ;50 mg/kg)处理的大鼠血清OPN水平、胰腺OPN mRNA和蛋白均出现急性上调。血清OPN在第7天结束时下降,但仍高于糖尿病前期水平。胰腺mRNA和蛋白呈现类似模式。STZ注射后24小时,OPN表达增强定位于胰岛周边,并围绕剩余的胰岛素阳性细胞。为探究OPN急性上调的意义,在添加STZ之前,先用OPN(0.15 - 15 nM)对新鲜分离的胰岛进行预处理。OPN通过依赖精氨酸 - 甘氨酸 - 天冬氨酸(RGD)降低诱导型一氧化氮合酶(iNOS)mRNA水平,显著降低了STZ诱导的胰岛中NO水平。向新鲜分离的轻度糖尿病胰岛(血糖<300 mg/dl)中添加OPN可显著改善其葡萄糖刺激的胰岛素分泌,并降低其NO水平。接下来我们研究了β细胞中OPN的调节。当向β细胞系RINm5F中添加STZ(5 mM)时,6小时内OPN mRNA水平显著升高。为区分STZ和高糖对OPN转录的影响,用荧光素酶标记的大鼠OPN启动子转染RINm5F细胞,并用STZ(0.05 - 5 mM)或葡萄糖(5 - 25 mM)处理。STZ在3小时内诱导OPN启动子活性上调,而高糖在48小时后诱导OPN启动子活性上调。我们的数据表明OPN是一种新型胰岛蛋白,在胰岛中受STZ和葡萄糖的差异调节。糖尿病诱导后OPN的初始上调可能是由于STZ诱导的毒性,而高OPN水平的维持可能是由于高血糖。STZ诱导糖尿病后OPN的急性诱导可能代表一种内源性机制,部分通过依赖RGD的NO调节机制来保护胰岛免受STZ诱导的细胞毒性。

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