Caenorhabditiselegans减数分裂染色体的长度敏感分区与交叉点的距离和数量有关。

IF 8.1 1区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY Current Biology Pub Date : 2024-11-04 Epub Date: 2024-10-11 DOI:10.1016/j.cub.2024.09.034
Carlos M Rodriguez-Reza, Aya Sato-Carlton, Peter M Carlton
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引用次数: 0

摘要

感知和控制大小对细胞的功能和存活至关重要。在线虫秀丽隐杆线虫的减数分裂过程中,出现了一个显著的尺寸感知例子。秀丽隐杆线虫的染色体会比较两条染色体 "臂 "的长度,这两条染色体 "臂 "是由其单个偏离中心的交叉点的位置划分的,它们会对这两条染色体臂进行不同程度的修饰,以确保姐妹染色单体的内聚力在减数第一次分裂时在较短的染色体臂上丧失,而较长的染色体臂则保持内聚力直至第二次分裂。虽然导致内聚力丧失的许多下游步骤已被确定,但对长度感应过程本身仍然知之甚少。在这里,我们利用长短染色体臂的细胞学可视化,结合定量显微镜、实时成像和模拟,研究了长度敏感性染色体分割的基本原理。通过定量分析携带多个交叉点的融合染色体上的短臂指定模式,我们建立了一个模型,在该模型中,短臂决定因子起源于交叉点指定位点,在突触复合体内扩散,并在有交叉界限的染色体片段内积累。我们通过实验证明了这一模型的关键假设:交叉点是突触复合体内部扩散的边界。此外,我们还根据我们的结果开发了一种离散模拟,该模拟再现了在野生型和之前报道的突变体中观察到的各种分区结果。我们的研究结果表明,可扩散因子的浓度被用作染色体长度的替代物,从而能够正确指定短臂和长臂以及正确分离染色体。
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Length-sensitive partitioning of Caenorhabditis elegans meiotic chromosomes responds to proximity and number of crossover sites.

Sensing and control of size are critical for cellular function and survival. A striking example of size sensing occurs during meiosis in the nematode Caenorhabditis elegans. C. elegans chromosomes compare the lengths of the two chromosome "arms" demarcated by the position of their single off-center crossover, and they differentially modify these arms to ensure that sister chromatid cohesion is lost specifically on the shorter arm in the first meiotic division, while the longer arm maintains cohesion until the second division. While many of the downstream steps leading to cohesion loss have been characterized, the length-sensing process itself remains poorly understood. Here, we have used cytological visualization of short and long chromosome arms, combined with quantitative microscopy, live imaging, and simulations, to investigate the principles underlying length-sensitive chromosome partitioning. By quantitatively analyzing short-arm designation patterns on fusion chromosomes carrying multiple crossovers, we develop a model in which a short-arm-determining factor originates at crossover designation sites, diffuses within the synaptonemal complex, and accumulates within crossover-bounded chromosome segments. We demonstrate experimental support for a critical assumption of this model: that crossovers act as boundaries to diffusion within the synaptonemal complex. Further, we develop a discrete simulation based on our results that recapitulates a wide variety of observed partitioning outcomes in both wild-type and previously reported mutants. Our results suggest that the concentration of a diffusible factor is used as a proxy for chromosome length, enabling the correct designation of short and long arms and proper segregation of chromosomes.

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来源期刊
Current Biology
Current Biology 生物-生化与分子生物学
CiteScore
11.80
自引率
2.20%
发文量
869
审稿时长
46 days
期刊介绍: Current Biology is a comprehensive journal that showcases original research in various disciplines of biology. It provides a platform for scientists to disseminate their groundbreaking findings and promotes interdisciplinary communication. The journal publishes articles of general interest, encompassing diverse fields of biology. Moreover, it offers accessible editorial pieces that are specifically designed to enlighten non-specialist readers.
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