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Endoplasmic Reticulum Ribosome Binding Protein 1(RRBP1)….doc
Endoplasmic Reticulum Ribosome Binding Protein 1(RRBP1)…
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第九章核糖体(ribosome)(教学资料).doc
F-0THS66;关于“高等教育”中“生物学”的教学资料参考范文文档。正文共2,691字,word格式文档。内容摘要:第一节核糖体的类型与结构,第二节多聚核糖体与蛋白质的合成,第一节核糖体的类型与结构,核糖体的功能,核糖体的形状、分布与化学组成,形状:颗粒状结构,没有膜结构包围,分布:真核细胞、原核细胞以及叶绿体和线粒体,化学成分:rRNA 60%,位于内部;r蛋白质40%,位于表面,基本类型与成分,基本类型,的核糖体:原核细胞,真核细胞的叶绿体和线粒体,的核糖体:真核细胞中,主要成分,蛋白质:40%,核糖体表面,核糖体内部,结构组成:核糖体大亚基、核糖体小亚基,核糖体的结构,结构与功能的分析方法,离子交换树脂可分离纯化各种r蛋白,电镜负染色与免疫标记技术结合:研究r蛋白在核糖体的亚单位上的定位,对rRNA,
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核糖体(ribosome).doc
核糖体(ribosome)
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The DEAD-Box Protein Dhh1 Promotes Decapping by Slowing Ribosome Movement.doc
The DEAD-Box Protein Dhh1 Promotes Decapping by Slowing Ribosome Movement
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What Makes Ribosome-Mediated Transcriptional Attenuation Sensitive to Amino Acid Limitation.doc
What Makes Ribosome-Mediated Transcriptional Attenuation Sensitive to Amino Acid Limitation
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Genome-Scale Analysis of Translation Elongation with a Ribosome Flow Model.doc
Genome-Scale Analysis of Translation Elongation with a Ribosome Flow Model
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Giardiavirus Internal Ribosome Entry Site Has an Apparently Unique Mechanism of Initiating Translation.doc
Giardiavirus Internal Ribosome Entry Site Has an Apparently Unique Mechanism of Initiating Translation
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Local Absence of Secondary Structure Permits Translation of mRNAs that Lack Ribosome-Binding Sites.doc
Local Absence of Secondary Structure Permits Translation of mRNAs that Lack Ribosome-Binding Sites
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Molecular Simulations of Cotranslational Protein Folding Fragment Stabilities, Folding Cooperativity, and Trapping in the Ribosome.doc
Molecular Simulations of Cotranslational Protein Folding Fragment Stabilities, Folding Cooperativity, and Trapping in the Ribosome

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