• Cyclic AMP binds to the regulatory subunit of protein kinase A: Protein kinase A phosphorylates phosphorylase kinase.

    腺苷酸结合蛋白激酶调节亚基一个磷酸化蛋白激酶磷酸化酶激酶。

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  • T-protein from Escherichia coli consists of three domains: chorismate mutase, prephenate dehydrogenase and a regulatory domain.

    大肠杆菌 T 蛋白含有三个结构分支酸变位预苯酸脱氢酶调节结构域。

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  • Structurally, a gene is formed by three regions: a regulatory region called the promoter juxtaposed to the coding region containing the protein sequence, and a “3’ tail” sequence.

    从结构上来讲基因包含三个区域称为启动子的调节区域;与其并列编码蛋白质的密码子区域;以及3'端尾部序列。

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  • The regulatory protein identified by Dr Craig's team inhibits the spread of cancer cells by removing and breaking down an invasive enzyme on the surface of cancer cells.

    Craig团队鉴定这种蛋白可以通过去除分解肿瘤细胞表面一种侵袭性抑制肿瘤细胞的扩散

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  • AIM to study the protective action of complement regulatory protein CD59 on complement dependent platelet injury by preventing the formation of membrane attack complex (MAC).

    目的研究补体调节蛋白CD59通过阻止补体复合物(mac)形成发挥其对依赖补体血小板损伤保护作用

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  • The iron response element (IRE) is a highly conserved RNA stem loop structure. It is the binding site of iron regulatory protein (IRP).

    反应元件(IRE)具有的高度保守RNA结构胞质中IRE结合调控蛋白(irp)的位点。

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  • Conclusion: The increased IMT might be related with down-regulation of complement regulatory protein CD55 expression, but has no direct association with complement C3, C4, properdin and CD59.

    结论:颈动脉imt增厚补体调节蛋白CD 55表达降低相关补体C 3、C4、备解素、补体调节蛋白CD 59直接关系。

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  • In research with rodents, the Boston group found that the regulatory protein PGC-1a switches on the brain's anti-oxidant defense system when free radicals begin to accumulate.

    关于啮齿类动物研究中,波士顿小组发现自由基开始聚集时,调节蛋白PGC-1a开启大脑抗氧化防御系统

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  • Objective to investigate the regulatory effect of Nitrogen Oxide (NO) and iron regulatory Protein (IRP) on the iron metabolism disorder in the livers of rats with Anemia of Chronic Disease (ACD).

    目的探讨一氧化氮(NO)、调节蛋白(IRP)慢性病贫血(ACD)大鼠肝组织代谢紊乱中的调节作用

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  • The abnormality of signal transduction and transcriptional regulatory protein is considered as two...

    目前认为信号转导转录调节蛋白异常与之相关的两个可能因素。

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  • Regulatory protein 14-3-3 proteins related to drought stress.

    其中调节蛋白14-3-3蛋白干旱胁迫有关

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  • Objective to study the expressions and relationship between serum resistin and Complement regulatory protein CD55s CD59 in patients with hyperlipidemia.

    目的观察高脂血症患者血清抵抗素补体调节蛋白CD 55、CD 59的表达关系

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  • Cyclin D1 encodes the regulatory subunit of a holoenzyme that phosphorylates and inactivates the retinoblastoma protein and promotes progression through the G1-S phase of the cell cycle.

    周期d 1编码一种调节亚单位酶利用蛋白磷酸化视网膜母细胞瘤蛋白,通过细胞周期G 1 - S期促进肿瘤进展恶化。

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  • CONCLUSION: DCN may be a negative regulatory protein inhibiting hepatoma carcinoma cell proliferation through inhibiting cell cycle and inducing apoptosis of cell in vitro.

    结论DCN可能一种负性调控蛋白,可通过调节细胞周期抑制肝癌细胞增殖,促进其凋亡

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  • T-protein from Escherichia coli consists of three domains:chorismate mutase, prephenate dehydrogenase and a regulatory domain.

    大肠杆菌T蛋白含有三个结构分支酸变位预苯酸脱氢酶调节结构域。

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  • The possible role of the proteolytic processing of the N-protein in the regulatory mechanism of both viral replication and transcription processes was discussed.

    本文还提出了N蛋白加工现象病毒复制转录调控过程可能起重要作用的设想。

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  • G protein is a superfamily of regulatory GTP hydrolases. They play pivotal roles in the signal transduction of cell growth and differentiation.

    蛋白一个调节gtp水解超家族,细胞增殖分化信号转导过程发挥关键性作用

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  • Analysis of the sequences showed that there were many cis-regulatory elements in these DNA segments, implying that these sequences may be bound by some transcriptional regulation protein factors.

    这些片段的DNA序列分析表明,它们存在各种顺式作用元件,由此推测它们可能是被一些木质素过氧化物酶基因转录调控相关的蛋白质所结合的序列。

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  • But now we know that this end often has a protein production regulatory program and in some cases can play a role in cancer.

    但是现在我们知道这个末端可以调节蛋白形成并且肿瘤作用

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  • Protein phosphorylation has emerged as a ubiquitous regulatory switch in cell signaling networks.

    蛋白磷酸化控制细胞信号传导无处不在

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  • Protein phosphorylation has emerged as a ubiquitous regulatory switch in cell signaling networks.

    蛋白磷酸化控制细胞信号传导无处不在

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