首页> 外文期刊>International journal of immunopathology and pharmacology. >Time-Related Dynamics of Variation in Core Clock Gene Expression Levels in Tissues Relevant to the Immune System
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Time-Related Dynamics of Variation in Core Clock Gene Expression Levels in Tissues Relevant to the Immune System

机译:与免疫系统相关的组织中核心时钟基因表达水平变化的时间相关动力学

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Immune parameters show rhythmic changes with a 24-h periodicity driven by an internal circadian timing system that relies on clock genes (CGs). CGs form interlocked transcription-translation feedback loops to generate and maintain 24-h mRNA and protein oscillations. In this study we evaluate and compare the profiles and the dynamics of variation of CG expression in peripheral blood, and two lymphoid tissues of mice. Expression levels of seven recognized key CGs (mBmall, mClock, mPer1, mPer2, mCry1, mCry2, and Rev-erbα) were evaluated by quantitative RT- PCR in spleen, thymus and peripheral blood of C57BL/6 male mice housed on a 12-h light (L)-dark (D) cycle and sacrificed every 4 h for 24 h (3–4 mice/time point). We found a statistically significant time-effect in spleen (S), thymus (T) and blood (B) for the original values of expression level of mBmal1 (S), mClock (T, B), mPer1 (S, B), mPer2 (S), mCry1 (S), mCry2 (B) and mRev-Erbα (S, T, B) and for the fractional variation calculated between single time-point expression value of mBmal1 (B), mPer2 (T), mCry2 (B) and mRev-Erbα (S). A significant 24-h rhythm was validated for five CGs in blood (mClock, mPer1, mPer2, mCry2, mRev-Erbα), for four CGs in the spleen (mBmal1, mPer1, mPer2, mRev-Erbα), and for three CGs in the thymus (mClock, mPer2, mRev-Erbα). The original values of acrophases for mBmal1, mClock, mPer1, mPer2, mCry1 and mCry2 were very similar for spleen and thymus and advanced by several hours for peripheral blood compared to the lymphoid tissues, whereas the phases of mRev-Erbα were coincident for all three tissues. In conclusion, central and peripheral lymphoid tissues in the mouse show different sequences of activation of clock gene expression compared to peripheral blood. These differences may underlie the compartmental pattern of web functioning in the immune system.
机译:免疫参数显示有24小时周期性变化的节奏,该变化由内部生物钟计时系统驱动,该生物钟系统依赖时钟基因(CG)。 CG形成互锁的转录-翻译反馈环,以产生并维持24小时的mRNA和蛋白质振荡。在这项研究中,我们评估并比较了小鼠外周血和两种淋巴组织中CG表达的概况和变化动态。通过定量RT-PCR评估了十二只C57BL / 6雄性小鼠的脾脏,胸腺和外周血中七种公认的关键CG(mBmall,mClock,mPer1,mPer2,mCry1,mCry2和Rev-erbα)的表达水平。 h光(L)-黑暗(D)周期,每4 h处死24 h(3-4只小鼠/时间点)。我们发现在脾脏(S),胸腺(T)和血液(B)中,mBmal1(S),mClock(T,B),mPer1(S,B)表达水平的原始值具有统计学意义的时间效应, mPer2(S),mCry1(S),mCry2(B)和mRev-Erbα(S,T,B)以及对于mBmal1(B),mPer2(T),mCry2的单个时间点表达值之间的分数变化(B)和mRev-Erbα(S)。针对血液中的五个CG(mClock,mPer1,mPer2,mCry2,mRev-Erbα),脾中的四个CG(mBmal1,mPer1,mPer2,mRev-Erbα)和三个CG验证了重要的24小时节律胸腺(mClock,mPer2,mRev-Erbα)。与淋巴组织相比,脾脏和胸腺的mBmal1,mClock,mPer1,mPer1,mPer2,mCry1和mCry2顶相的原始值非常相似,而外周血则提前了几个小时,而这三个阶段的mRev-Erbα的相位都一致组织。总之,与外周血相比,小鼠的中央和外周淋巴组织显示出不同的Clock基因表达激活序列。这些差异可能是免疫系统中纤维网功能的分隔模式的基础。

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