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Meiotic double-strand breaks occur once per pair of (sister) chromatids and via Mec1/ATR and Tel1/ATM once per quartet of chromatids

机译:减数分裂双链断裂每对(姐妹)染色单体发生一次并且通过Mec1 / ATR和Tel1 / ATM每四倍染色单体发生一次

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摘要

Meiotic recombination initiates via programmed double-strand breaks (DSBs). We investigate whether, at a given initiation site, DSBs occur independently among the four available chromatids. For a single DSB “hot spot”, the proportions of nuclei exhibiting zero, one, or two (or more) observable events were defined by tetrad analysis and compared with those predicted by different DSB distribution scenarios. Wild-type patterns are incompatible with independent distribution of DSBs among the four chromatids. In most or all nuclei, DSBs occur one-per-pair of chromatids, presumptively sisters. In many nuclei, only one DSB occurs per four chromatids, confirming the existence of trans inhibition where a DSB on one chromosome interactively inhibits DSB formation on the partner chromosome. Several mutants exhibit only a one-per-pair constraint, a phenotype we propose to imply loss of trans inhibition. Signal transduction kinases Mec1 (ATR) and Tel1 (ATM) exhibit this phenotype and thus could be mediators of this effect. Spreading trans inhibition can explain even spacing of total recombinational interactions and implies that establishment of interhomolog interactions and DSB formation are homeostatic processes. The two types of constraints on DSB formation provide two different safeguards against recombination failure during meiosis.
机译:减数分裂重组通过编程的双链断裂(DSB)启动。我们调查在给定的起始位点,DSBs是否在四个可用的染色单体之间独立发生。对于单个DSB“热点”,通过四分位数分析定义了显示零,一或两个(或更多)可观察事件的核比例,并将其与不同DSB分布方案预测的比例进行了比较。野生型模式与DSB在四个染色单体之间的独立分布不兼容。在大多数或所有核中,DSB可能每对染色单体发生一次,可能是姐妹。在许多核中,每四个染色单体仅出现一个DSB,这证实了反式抑制的存在,其中一条染色体上的DSB相互作用地抑制了伴侣染色体上的DSB形成。几个突变体仅表现出一对对的约束,我们建议该表型暗示反式抑制的丧失。信号转导激酶Mec1(ATR)和Tel1(ATM)表现出这种表型,因此可能是这种作用的介体。反式抑制的蔓延甚至可以解释整个重组相互作用的间隔,并暗示同系相互作用的建立和DSB的形成是稳态过程。 DSB形成的两种类型的约束为减数分裂过程中的重组失败提供了两种不同的保护措施。

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