钙网蛋白(CRT),calreticulin(CRT)
1)calreticulin(CRT)钙网蛋白(CRT)
2)calreticulin钙网蛋白
1.Low Dose of Ketamine Treatment Inhibiting Up-regulation of Spinal Calreticulin and IP3 Receptor mRNA in Rats with Spared Nerve Injury;小剂量氯胺酮抑制坐骨神经分支损伤大鼠脊髓钙网蛋白与三磷酸肌醇受体mRNA上调
2.Expression Profile and Gene Structure Analysis of Calreticulin From the Silkworm,Bombyx mori;家蚕钙网蛋白的基因结构与初步表达谱研究
3.Cloning and prokaryotic expression of mouse calreticulin;小鼠钙网蛋白的克隆与原核表达
英文短句/例句

1.New Insights into the Role of IgG Anti-dsDNA Antibody and Calreticulin in Lupus Nephritis;IgG型抗dsDNA抗体和钙网蛋白在狼疮肾炎中的作用
2.Effect of Post-conditioning on Calreticulin Expression in Cultured Adult Rat Cardiomyocytes后处理对大鼠心肌细胞钙网蛋白表达的影响
3.Experimental Studies of Recombinant Calreticulin in Anti-tumor Immunotherapy重组钙网蛋白用于抗肿瘤免疫治疗的实验研究
4.Calreticulin-mediated Endoplasmic Reticulum Stress-related Apoptosis is Involved in Hypoxia/Reoxygenation Injury of Cardiomyocytes钙网蛋白介导的内质网应激相关凋亡参与心肌细胞缺氧/复氧损伤
5.Expression of mouse calreticulin missing endoplasmic reticulum retain signal peptide in B16-F1 cell line缺失内质网驻留信号肽的小鼠钙网蛋白在B16-F1细胞中的表达
6.The Mechanism and the Differential Expression of MMP2 and MMP9 in Calreticulin Deficient Cells;钙网蛋白基因缺陷细胞中MMP2和MMP9的表达及其调节机制
7.Construction, Fusion Expression, and Biological Characterization of Calreticulin and Apo-2L人凋亡素2配体与钙网蛋白的融合表达及生物学作用研究
8.Cardioprotective mechanism of calreticulin up-regulation induced by hypoxic postconditioning低氧后处理诱导钙网蛋白表达上调的心肌保护机制
9.Change of calreticulin precursor in pulmonary hypertension rats interfered with puerarin葛根素干预肺动脉高压大鼠时钙网蛋白前体变化的研究
10.Effect of Exercise on Cardiac Sarcoplasmic Reticulum Calcium-transport Proteins;运动对心肌肌浆网钙转运蛋白的影响
11.Change of Expression of the Cardiac Na~+-Ca~(2+) Exchanger mRNA and SR Ca~(2+) -ATPase mRNA in Diabetic Rats;对糖尿病大鼠心肌钠钙交换蛋白与肌浆网钙泵mRNA表达水平的研究
12.Calcium leak of sarcoplasmic reticulum induces degradation of troponin I in skeletal muscle fibers肌纤维内肌质网钙漏可能诱发肌钙蛋白抑制亚基降解
13.calpain inhibitor(需)钙蛋白酶抑制剂
14.The Study on Effect of Exercise to Gene Expression of Calcium Modulin in Diabetic Rat Cardiomyocyte;运动对糖尿病大鼠心肌肌浆网钙调控蛋白的干预研究
15.The Expression and Significance of Calretinin in the Colon of Patients with Hirschsprung's Disease钙视网膜蛋白在先天性巨结肠症肠壁的表达及意义
16.Effect of Endoplasmic Reticulum Stress Protein of CRT on Intracellular Calcium Homeostasis Regulation after Exercise内质网应激蛋白介导运动后骨骼肌钙稳态调节的研究
17.Proteomic Analysis of Proteins in Wheat Spikes after Inoculation with F. Graminearum and Isolation, Characterization of Calreticulin from Wheat;赤霉菌侵染后小麦穗部表达蛋白的差示分析及钙网联蛋白基因的克隆研究
18.clathrin associated protein网格蛋白相关蛋白(质)
相关短句/例句

calreticulin钙网蛋白
1.Low Dose of Ketamine Treatment Inhibiting Up-regulation of Spinal Calreticulin and IP3 Receptor mRNA in Rats with Spared Nerve Injury;小剂量氯胺酮抑制坐骨神经分支损伤大鼠脊髓钙网蛋白与三磷酸肌醇受体mRNA上调
2.Expression Profile and Gene Structure Analysis of Calreticulin From the Silkworm,Bombyx mori;家蚕钙网蛋白的基因结构与初步表达谱研究
3.Cloning and prokaryotic expression of mouse calreticulin;小鼠钙网蛋白的克隆与原核表达
3)Calreticulin180钙网蛋白180
4)calprotectin(肌)钙网蛋白
5)sarcoplasmic reticulum Ca2+-ATPase肌浆网钙泵蛋白
6)Calretinin钙视网膜蛋白
1.Calretinin immunohistochemical staining was strongly positive in ganglionic cells both in the myenteric and submucosal plexuses in the dilated segments of HD and the control group,and also it was positive in peripheral nerve fib目的本研究应用免疫组织化学染色方法,观察对照组肠壁、先天性巨结肠症(Hirschsprung\'s disease,HD)患者有神经节细胞段和无神经节细胞段肠壁神经组织中钙视网膜蛋白(Calretinin,CR)的表达结果,并同时对比观察神经元特异性烯醇化酶(neurone specific enolase,NSE)、S-100蛋白(S-100 protein,S-100)、组织蛋白酶D(cathpsin D,CAD)的三种肠道神经标志物在对照组及巨结肠肠壁表达情况,目的在于了解HD的病理生理改变以及寻找诊断先天性巨结肠的简便有效的方法。
2.Results There was a sinigicant difference in the expressions of Calretinin immunohistochemistry between HD ecstatic group and HD spastic group(<0.目的探讨钙视网膜蛋白(calretinin,CR)在先天性巨结肠(HD)中的表达及其意义。
延伸阅读

钙网蛋白分子式:CAS号:性质:是1974年命名的骨骼肌肌质网膜上的钙结合蛋白。该蛋白质在非肌肉组织中含量丰富,是内质网(ER)主要的钙结合蛋白之一。存在于高等生物除红细胞之外的所有细胞中。结合钙的能力极强。分子中有三个结构和功能区,即N-末端区,P区和C-末端区。N-末端区包含180个氨基酸残基(1~180),这一区域的氨基酸序列是最保守的。P区(181~280氨基酸残基)富含脯氨酸,具有二组三序列重复。C-末端与肌质网的钙贮藏蛋白-集钙蛋白(calsequestrin)相似,这一区域呈强酸性,有很高钙结合容量,但与钙亲和力低。C-末端含有作为内质网滞留信号的四肽(KDEL)。它通常认为定位于内质网(包括核膜和滑面内质网)中。它主要有四种生物学功能:(1)作为内质网监护蛋白;(2)钙的贮藏和信号转导;(3)细胞黏附;(4)基因表达的调控。