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- nucleolar ribonucleoprotein particle 核仁核糖核蛋白颗粒
- small nucleolar ribonucleoprotein snoRNP
- small nucleolar ribonucleoprotein(snoRNP) 核仁小核糖核蛋白
- nucleolar ribonucleoprotein 核仁核糖核蛋白
- Argyrophilic nucleolar organizer regions stain. 九、核仁组成区嗜银染色。
- One implication of this structure is that the RNA binds to the outside in the ribonucleoprotein complex. 透过这条深沟,(科学家完全)可以推断在核蛋白复合体中,RNA位于外侧,并与两条蛋白质链一起形成核蛋白分子。
- Effect of HTO on nucleolar fibrous core is studied by using new silverstaining and electro-microscopic examination. 利用电子显微镜和银染技术研究HTO对莱哈衣藻核仁纤维区的辐射效应。
- Telomerase, a ribonucleoprotein enzyme, is a key component in maintaining the development of malignant tumor. 端粒酶激活与恶性肿瘤发生发展之间存在着密切的关系。
- Telomere is synthesized with the action of telomerase, a ribonucleoprotein with reverse transcriptase activity. 它的合成由一个特殊的具有反转录活性的核糖核蛋白-端粒酶完成。
- The results showed that nucleolar DNA distributed in FC and juncture of FC/DFC in the forms of surrounding FC. 结果表明,核仁中的rDNA位于纤维中心(FC)以及FC与致密纤维组分的交界处,以环绕FC的形式排布。
- Detailed EM of nucleolar structure, showing fibrillar (1), granular (2), and amorphous (3) portions. 胞核电镜结构,显示了原纤维(1),颗粒(2),不定型结构(3)
- Telomerase, a eukaryotic ribonucleoprotein complex, contains both essential RNA and a protein reverse transcriptase subunit. 端粒酶是一个特殊的具有反转录活性的核糖核蛋白。
- The most effective one was 2.5% DMSO which caused marked reduction of nucleolar size. 5%25DMSO的作用最显著;核仁缩小仅见于2.;5%25组。
- U17 snoRNA is a member of the H/ACA box class of small nucleolar RNAs involved in ribosomal RNA (rRNA) maturation. U17 snoRNA是H/ACA纲的snoRNA,参与rRNA的加工成熟。
- Tandem repetitive sequence mainly locates on knob, nucleolar organizer region, centromere and telomere of chromosome. 重复序列可分为两种类型:一种为串联重复序列,另一种为散在重复序列。
- The nucleolar exudates appeared in the cytoplasm near out nuclear envelope of previtellogenic oocyte. 在靠近核外膜的胞质中可观察到核仁外排物。
- Objective:Telomerase is a ribonucleoprotein complex, which is silent in normal human somatic cells but may be reactivated by a series of regulators, and cause tumorigenesis. 目的:端粒酶是一种核糖核蛋白复合物,在人类正常体细胞中不表达,而在约85%25的肿瘤细胞中,端粒酶活性被重新激活,强烈提示端粒酶重新激活在肿瘤发生中发挥着重要作用,已经证实端粒酶逆转录酶(telomerase reverse transcriptase)是端粒酶活性的关键限速因子。
- In 4 cases, endothelial atypia, consisting of nuclear and nucleolar enlargement, was noted. 4例出现内皮细胞不典型性,可以注意到核和核仁增大。
- Since RNA splicing factor might interact with HCV 3’NCR and be required for viral RNA synthesis, human small nuclear ribonucleoprotein U2B was chosen for further study. 基于RNA剪接因子可能与HCV 3'NCR相互作用、调节HCV复制的推测,本研究进一步探讨了剪接因子U2B蛋白在HCV基因复制中的作用。
- Dissociation of proteins from the remaining nucleolar subcompartments occurred at a faster rate and was coincident with NE breakdown. 剩下的核仁亚组分中的蛋白的分裂同时在以很快的速率发生,最后与NE的降解相一致了。
