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A general approach for controlling transcription and probing epigenetic mechanisms: Application to the Cd4 locus

机译:用于控制转录和探测表观遗传机制的一般方法:适用于CD4轨迹

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摘要

Synthetic regulatory proteins such as tetracycline (tet)-controlled transcription factors are potentially useful for repression as well as ectopic activation of endogenous genes and also for probing their regulatory mechanisms, which would offer a versatile genetic tool advantageous over conventional gene targeting methods. Here we provide evidence supporting this concept using Cd4 as a model. CD4 is expressed in Double Positive (DP) and CD4 cells but irreversibly silenced in CD8 cells. The silencing is mediated by heterochromatin established during CD8 lineage development via transient action of the Cd4 silencer; once established, the heterochromatin becomes self-perpetuating independently of the Cd4 silencer. Using a tet-sensitive Cd4 allele harboring a removable Cd4 silencer, we found that a tet-controlled repressor recapitulated the phenotype of Cd4–deficient mice, inhibited Cd4 expression in a reversible and dose-dependent manner, and could surprisingly replace the Cd4 silencer to induce irreversible Cd4 silencing in CD8 cells, thus suggesting the Cd4 silencer is not the (only) determinant of heterochromatin formation. On the other hand, a tet-controlled activator reversibly disrupted Cd4 silencing in CD8 cells. The Cd4 silencer impeded this disruption but was not essential for its reversal, which revealed a continuous role of the silencer in mature CD8 cells while exposing a remarkable intrinsic self-regenerative ability of heterochromatin after forced disruption. These data demonstrate an effective approach for gene manipulation and provide insights into the epigenetic Cd4 regulatory mechanisms that are otherwise difficult to obtain.
机译:合成的调节蛋白,例如四环素(tet)控制的转录因子,可能对内源基因的阻遏和异位激活以及探测其调节机制都可能有用,这将提供一种优于常规基因靶向方法的通用遗传工具。在这里,我们提供了使用Cd4作为模型支持这一概念的证据。 CD4在双阳性(DP)和CD4细胞中表达,但在CD8细胞中不可逆转地沉默。沉默是由CD8谱系发育过程中通过Cd4沉默子的瞬时作用建立的异染色质介导的。一旦建立,异染色质就独立于Cd4沉默子而自我延续。使用带有可移动的Cd4沉默子的tet敏感Cd4等位基因,我们发现tet控制的阻遏物可概括Cd4缺陷型小鼠的表型,以可逆和剂量依赖性的方式抑制Cd4的表达,并且可能令人惊讶地将Cd4沉默子替换为诱导CD8细胞中不可逆的Cd4沉默,因此表明Cd4沉默子不是异染色质形成的(唯一)决定因素。另一方面,tet控制的激活剂可逆地破坏CD8细胞中的Cd4沉默。 Cd4沉默子阻止了这种破坏,但对于它的逆转而言并不是必需的,这揭示了沉默子在成熟的CD8细胞中的连续作用,同时在强迫破坏后暴露出异染色质的显着内在自我再生能力。这些数据证明了一种有效的基因操纵方法,并为表观遗传Cd4调控机制提供了见识,而这些机制否则很难获得。

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