ligase
n. [生化] 连接酶
2026-03-21 17:22 浏览次数 13
n. [生化] 连接酶
1. synthetase
2. synthetase
joining enzyme连接酶;接合酶
polynucleotide ligase多核苷酸连接酶
RNA ligaseIn enzymology, an RNA ligase (ATP) () is an enzyme that catalyzes the chemical reaction
CoA ligase辅酶A生成酶
E3 ligase泛素连接酶
amido ligase酰胺连接酶
splicing ligase剪接连接酶
N ligaseCN连接酶
protein ligase连接酶
DNA ligaseDNA连接酶;多(聚)脱氧核糖核苷酸合酶
as bases are added by polymerase to the starting point of a new complementary strand, known as a primer, or recognized by ligase as a match, the template's sequence is revealed.
当聚合酶将一个核苷酸加在新互补链的起始引子之后,或接合酶认定某段核苷酸链与原始模版配对,就可利用这些反应来得出原始模版的序列。
objective to investigate the effect of long chain fatty acid-coa ligase 4(facl4) in the pathogenesis of primary hepatic carcinoma(phc).
目的探讨脂肪酸辅酶a连接酶长链4(facl4)在原发性肝癌(phc)发生中的作用。
scf complex is a very important ubiquitin e3 ligase which has been exploited very well in plants.
scf复合体是一种非常重要的e3泛素连接酶,在植物中研究的最为深入。
the breast cancer susceptibility gene, brca1, codes for an e3 ubiquitin ligase that functions in the maintenance of genome stability through regulation of the dna damage response and dna repair.
乳腺癌易感基因,brca1,编码一种e3泛素连接酶,brca1通过调控dna损伤反应和dna修复维持基因组的稳定性。
the ring-like ubiquitin e3 ligase of the present invention is involved in mediating nitrogen limitation adaptive responses in plants and its expression is influenced by nitrogen status.
本发明的ring样遍在蛋白e3连接酶参与介导植物中的氮限制适应性应答,且其表达受氮状态的影 响。
「the l1 ligase appears to use strategies of transition-state stabilization and acid-base catalysis similar to those that exist for natural ribozymes and protein enzymes, 」 he said.
「l1连接酶似乎使用了与存在于自然界的核酶和蛋白酶相似的过渡态稳定策略和酸堿催化。」他说。
observations made during the purification of t_4-rna ligase show that this method is suitable for both the pure enzyme and the crude enzyme.
用该方法进行t_4-rna连接酶制备过程的活力测定表明,该方法适合于纯酶制剂的活力测定也适合于粗酶制剂的活力测定。
the breast cancer susceptibility gene, brca1, codes for an e3 ubiquitin ligase that functions in the maintenance of genome stability through regulation of dna damage response and dna repair.
乳腺癌易感基因,brca1,编码一种e3泛素连接酶,brca1通过调控dna损伤反应和dna修复维持基因组的稳定性。
the ubiquitin-e2 complex is attached to substrate protein by recognition of ubiquitin-protein ligase (e3), then degraded by the 26s proteasome.
泛素连接酶e3负责连接泛素和特异性的底物,这样泛素化的底物可以被26s蛋白酶体降解为若干肽段。
typing technology is the main method to evaluate gene polymorphism. the parallel typing system based on ligase detection reaction is(established) for gene polymorphism.
本文建立了一个基于连接酶检测反应的基因多态性并行检测系统,该系统应用连接酶检测反应与基因芯片技术。
chip, an e3 ubiquitin ligase and cochaperones, involves in energy metabolism and protein quality control.
chip属于连接酶类,具有e3泛素连接酶活性,参与能量代谢途径和新陈代谢。
in this paper, we summarized the drought stress regulation mechanism, plant ubiquitin ligase e3, and emphatically described the ubiquitin ligase e3 response to plant drought stress and its mechanisms.
本文概述了植物干旱胁迫的调控机制、植物的泛素连接酶e3,并着重阐述了泛素连接酶e3介导的植物干旱胁迫反应及其作用机制。
white and colleagues, headed by mit associate professor of chemistry alice ting, first engineered a fluorophore ligase derived from the natural escherichia coli enzyme lipoic acid ligase (lpla).
怀特和他的同事,在麻省理工学院化学系副教授爱丽丝汀的带领下,首先研制出一种荧光素连接酶,它来源于天然大肠桿菌硫辛酸连接酶(lpla)。
the regulatory step affected by phosphorylation could involve either recognition of the substrate by an e3 ubiquitin ligase or the actual conjugation reaction.
由磷酸化影响的调控步骤可能与e3泛素连接酶对底物的识别有关,也可能与实际的交联反应有关。
methods tlr2 gene polymorphisms were analyzed by dna sequencing in a small amount of samples. snps in tlr2 gene were detected by ligase detection technique in a large amount of samples.
方法在小样本中测序检测tlr2基因中可能存在的基因多态性,再用连接酶特异检测技术在大样本进行snp分型,并通过统计学方法分析基因多态性与结核病易感性之间相关性。
objective: to determine the sensitivity and specificity of ligase chain reaction(lcr) for the detection of neisseria gonorrhoeae and chlamydia trachomatis in the first-void urine of men.
目的:应用连接酶链反应(lcr)技术检测男性尿标本中的淋病奈瑟菌和沙眼衣原体,初步评价其敏感性和特异性。
objective to study the clinical significance of ligase chain reaction (lcr) in urogenital infection, we identified chlamydia trachomatis (ct) by lcr and cell culture.
沙眼衣原体(ct)是人类的一种重要病原微生物,为感染泌尿生殖道、口腔、直肠和眼结膜等粘膜表面的专性细胞内寄生物。