• 线粒体dna一个很奇特的东西

    MITOCHONDRIAL DNA is a remarkable thing.

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  • 线粒体并不使用通用遗传密码

    Mitochondria do not use the universal genetic code.

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  • 因此线粒体细胞真正重要部分

    The mitochondrion is therefore a really essential part of the cell.

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  • 年龄增长线粒体功能差异

    There are differences in mitochondrial function with age as well.

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  • 线粒体基因组具有高度保守性

    Mitochondrial DNA sequence is highly conserved within species.

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  • 线粒体细胞凋亡调控活动中心

    Mitochondria play a central role in the regulation of apoptotic cell death.

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  • 目前线粒体中分离出铁硫蛋白。

    They have also been isolated from mitochondria.

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  • 这两化合物相信线粒体功能中发挥作用

    Both compounds are believed to play a role in mitochondrial function.

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  • 线粒体细胞的能量工厂。

    The mitochondria are a cell’s powerpacks.

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  • 线粒体细胞能量工厂。

    The mitochondria are a cell's powerpacks.

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  • 修复线粒体有可能修复一个老化的你。

    Fix the mitochondria, and you might fix aging itself.

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  • 线粒体真核细胞中的一种重要细胞器

    Mitochondrion is an important subcellular organ of cell.

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  • 遗传信息染色体线粒体DNA携带。

    The genetic information is carried in the DNA of the chromosomes and mitochondria.

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  • 例如随着年龄增长线粒体大大减少

    For example, there are far fewer mitochondria as people age.

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  • 身体每个细胞线粒体很小能量单位

    Mitochondria are tiny energy units within eery cell of the body.

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  • 细胞器的移植主要绿线粒体的移植。

    Cell transplant are mainly in green and mitochondria transplant.

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  • 线粒体自身携带DNA自我复制表达

    Mitochondria contain their own DNA. They can replicate and express themselves.

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  • 细胞凋亡的过程中,线粒体主要的作用

    Mitochondria play a crucial role in cellular survival and apoptosis.

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  • 现就线粒体通透性转换孔研究现状做一综述

    This review articles is refer to the study current situation of MPTP.

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  • 例如运动很多时,你会产生较多线粒体

    For example, when you exercise a lot, you make more mitochondria.

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  • 这种特定任务到了线粒体发电厂”的细胞。

    That particular task falls to the mitochondria, the "power plants" of the cell.

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  • 研究背景——线粒体基因组稀有变异引发疾病

    Background - Rare mutations in the mitochondrial genome may cause disease.

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  • 该蛋白存在一种螺旋结构线粒体运输肽结构。

    A transmembrane helical structure and a mitochondria transportation structure were also found.

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  • 长期以来,人们一直认为线粒体存在DNA修复

    It has long been held that there is no DNA repair in mitochondrial.

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  • ROS线粒体损伤之间关系,至今尚未完全清楚

    However, the relationship between the ROS and the mitochondrial injury is still unclear.

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  • 线粒体膜尚基本完整,轻度崩解,游离核蛋白体多。

    There was a mild breakdown of myelin and many free ribosomes.

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  • 线粒体各指标损伤防治差异显著P<0.01)。

    There were significant difference between protection group and injure group(P< 0. 01 ).

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  • 线粒体各指标损伤防治差异显著P<0.01)。

    There were significant difference between protection group and injure group(P< 0. 01 ).

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