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1)  DEAD-box family
DEAD-box家族
1.
DEAD-box family proteins are a putative ATP-dependent RNA helicase, which form a widely dispersed family of proteins ranging from viruses to mammals, and are associated with nearly all RNA processes.
DEAD-box家族蛋白是一类ATP依赖的RNA解旋酶,广泛存在于从细菌到哺乳动物的许多物种中,参与RNA代谢的几乎所有过程。
2.
In this thesis, cDNAs of reproduction-related genes including Cf-vasa, Cf-PL10 and Cf-p68 of DEAD-box family and Cf-boule of DAZ f.
本文采用同源克隆策略,在栉孔扇贝中分离获得了生殖相关的DEAD-box家族基因中的Cf-vasa、Cf-PL10和Cf-p68以及DAZ家族基因中的Cf-boule的cDNA,对其进行了序列特征和时空表达分析,并以Cf-vasa mRNA为标记,鉴定了栉孔扇贝原生殖细胞起源的方式和时间,及其在早期幼虫发育中的迁移。
2)  DExD-box family
DExD-box家族
1.
cDNAs of reproduction-related genes including DExD-box family and Mn-cyclin B,Mn-cdc2, Mn-Peritrophin were gained using a homologous cloning strategy or basis on expressed sequence tags,followed by analysis of characterization and spatio-temporal expression.
2、日本沼虾DExD-box家族基因的分子克隆、特征分析及时空表达根据ESTs提供的信息,结合同源克隆策略,采用RACE技术成功克隆了以vasa为代表的DExD-box家族4个基因的全长cDNA序列。
3)  DEAD-box helicase
DEAD-box解旋酶
4)  G-box family primer
G-box家族引物
5)  DEAD-box RNA helicases
DEAD-box RNA解旋酶
1.
DEAD-box RNA helicases are involved in various aspects of RNA metabolism, including RNA transcription, premRNA splicing, ribosome biogenesis, nucleocytoplasmic transport, translation and RNA decay.
DEAD-box RNA解旋酶参与RNA转录、前体mRNA剪切、核糖体发生、核质运输、蛋白质翻译、RNA降解等重要的生命活动。
2.
The DEAD-box RNA helicases is a big ATP-dependent RNA helicases family, which originates from a wide range of organisms ranging from prokaryotes, including viruses, to eukaryotes such as yeast, plants and animals.
DEAD-box RNA解旋酶是一个依赖ATP的RNA解旋酶大家族,广泛地存在于从原核生物的细菌到真核生物的酵母、植物和动物中。
6)  DEAD box
DEAD盒
1.
The ATP dependent RNA helicases of the DEAD box family, involved in almost every cellular process of RNA metabolism, play many essential roles during cell development and growth in almost all organisms.
DEAD盒蛋白家族的ATP依赖性的RNA解旋酶类参与细胞内几乎所有的RNA代谢过程 ,在几乎所有生物的细胞生长发育过程中扮演着众多不可或缺的角色。
补充资料:dead polymer
分子式:
分子量:
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性质:在链式聚合反应中发生链终止而成为不再有反应活性的聚合物。所有烯类单体以链式自由基聚合形成的聚合物是死聚合物。只有在负离子聚合中由于无链终止和链转移反应,增长链可以一直保持活性,此时可得到活性聚合物。

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