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糖尿病会增加肌浆(内质)网Ca2+ -ATP酶上晚期糖基化终末产物的形成。

Diabetes increases formation of advanced glycation end products on Sarco(endo)plasmic reticulum Ca2+-ATPase.

作者信息

Bidasee Keshore R, Zhang Yinong, Shao Chun Hong, Wang Mu, Patel Kaushik P, Dincer U Deniz, Besch Henry R

机构信息

Department of Pharmacology, University of Nebraska Medical Center, Omaha, Nebraska, USA.

出版信息

Diabetes. 2004 Feb;53(2):463-73. doi: 10.2337/diabetes.53.2.463.

Abstract

Prolongation of relaxation is a hallmark of diabetic cardiomyopathy. Most studies attribute this defect to decreases in sarco(endo)plasmic reticulum Ca(2+)-ATPase (SERCA2a) expression and SERCA2a-to-phospholamban (PLB) ratio. Since its turnover rate is slow, SERCA2a is susceptible to posttranslational modifications during diabetes. These modifications could in turn compromise conformational rearrangements needed to translocate calcium ions, also leading to a decrease in SERCA2a activity. In the present study one such modification was investigated, namely advanced glycation end products (AGEs). Hearts from 8-week streptozotocin-induced diabetic (8D) rats showed typical slowing in relaxation, confirming cardiomyopathy. Hearts from 8D animals also expressed lower levels of SERCA2a protein and higher levels of PLB. Analysis of matrix-assisted laser desorption/ionization time-of-flight mass data files from trypsin-digested SERCA2a revealed several cytosolic SERCA2a peptides from 8D modified by single noncrosslinking AGEs. Crosslinked AGEs were also found. Lysine residues within actuator and phosphorylation domains were cross-linked to arginine residues within the nucleotide binding domain via pentosidine AGEs. Two weeks of insulin-treatment initiated after 6 weeks of diabetes attenuated these changes. These data demonstrate for the first time that AGEs are formed on SERCA2a during diabetes, suggesting a novel mechanism by which cardiac relaxation can be slowed during diabetes.

摘要

舒张期延长是糖尿病性心肌病的一个标志。大多数研究将这种缺陷归因于肌浆(内质)网Ca²⁺-ATP酶(SERCA2a)表达的降低以及SERCA2a与受磷蛋白(PLB)的比例下降。由于SERCA2a的周转率较慢,在糖尿病期间它易受翻译后修饰的影响。这些修饰反过来可能会损害转运钙离子所需的构象重排,也导致SERCA2a活性降低。在本研究中,对一种这样的修饰进行了研究,即晚期糖基化终产物(AGEs)。来自8周链脲佐菌素诱导的糖尿病(8D)大鼠的心脏表现出典型的舒张减慢,证实患有心肌病。来自8D动物的心脏也表达较低水平的SERCA2a蛋白和较高水平的PLB。对胰蛋白酶消化的SERCA2a的基质辅助激光解吸/电离飞行时间质谱数据文件的分析显示,来自8D的几个胞质SERCA2a肽被单个非交联AGEs修饰。还发现了交联的AGEs。通过戊糖苷AGEs,激活域和磷酸化域内的赖氨酸残基与核苷酸结合域内的精氨酸残基交联。糖尿病6周后开始的两周胰岛素治疗减轻了这些变化。这些数据首次证明糖尿病期间SERCA2a上会形成AGEs,提示了一种糖尿病期间心脏舒张减慢的新机制。

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