首页> 外文OA文献 >Multiple pathways of copy control of gamma replicon of R6K: mechanisms both dependent on and independent of cooperativity of interaction of tau protein with DNA affect the copy number.
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Multiple pathways of copy control of gamma replicon of R6K: mechanisms both dependent on and independent of cooperativity of interaction of tau protein with DNA affect the copy number.

机译:R6Kγ复制子的复制控制的多种途径:依赖和独立于tau蛋白与DNA相互作用的协同作用的机制都会影响拷贝数。

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摘要

The ability of a replication initiator protein to promote intermolecular pairing of two replication origins resulting in the turning off of the origin pair has been called handcuffing. We have endeavored to test the validity of the handcuffing model by isolating two mutant forms of the tau initiator protein of R6K that elicit high copy number phenotype. We have discovered that one mutant called tau 113 yielded a 3.6-fold increase in copy number of a gamma replicon with a concomitant impairment of its ability to loop DNA and to pair binding sites (iterons) in comparison with normal tau, thus supporting the handcuffing model. A second mutant called tau 108, on the other hand, elicited a 3-fold increase in copy number without showing any measurable loss in its ability to loop and pair gamma iterons. Both mutant forms of the wild-type tau protein showed no detectable differences in their affinity of binding to the gamma iterons. Thus, the phenotype of tau 108 is consistent with the proposition that copy number control involves macromolecular interactions other than cooperativity at a distance of tau or interaction of tau with the primary binding sites at gamma. Taken together, the results are consistent with the notion that tau-mediated handcuffing is a mechanism, but not the only mechanism, of copy control in R6K. Interaction of tau with host proteins is likely to provide additional facets of the copy control mechanism.
机译:复制引发剂蛋白促进两个复制起点的分子间配对而导致起点对关闭的能力被称为手铐。我们已经尝试通过分离引起高拷贝数表型的R6K的tau起始蛋白的两种突变形式来测试手铐模型的有效性。我们已经发现,与正常的tau相比,一种名为tau 113的突变体产生的γ复制子的拷贝数增加了3.6倍,同时其环化DNA和结合位点(双子)的能力也受到了损害,从而支持了手铐模型。另一方面,另一种名为tau 108的突变体引起拷贝数增加了3倍,而其环化和配对γ-Iteron的能力却没有任何可测量的损失。野生型tau蛋白的两种突变形式在与γIteron的结合亲和力中均未显示可检测的差异。因此,tau 108的表型与这样的主张是一致的,即拷贝数控制涉及在tau距离以外的大分子相互作用或tau与γ处主要结合位点的相互作用以外的大分子相互作用。两者合计,结果与tau介导的手铐是R6K中复制控制的一种机制但不是唯一的机制相一致。 tau与宿主蛋白的相互作用可能会提供复制控制机制的其他方面。

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  • 作者

    Miron, A; Patel, I; Bastia, D;

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  • 年度 1994
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  • 原文格式 PDF
  • 正文语种 en
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