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A Hybrid-Body Containing Constituents of Both P-Bodies and Stress Granules Forms in Response to Hypoosmotic Stress in Saccharomyces cerevisiae

机译:酿酒酵母对低渗胁迫响应的同时包含P体和应力颗粒形式的混合体成分。

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摘要

The cytoplasm of the eukaryotic cell is a highly compartmentalized space that contains a variety of ribonucleoprotein (RNP) granules in addition to its complement of membrane-bound organelles. These RNP granules contain specific sets of proteins and mRNAs and form in response to particular environmental and developmental stimuli. Two of the better-characterized of these RNP structures are the stress granule and Processing-body (P-body) that have been conserved from yeast to humans. In this report, we examined the cues regulating stress granule assembly and the relationship between stress granule and P-body foci. These two RNP structures are generally thought to be independent entities in eukaryotic cells. However, we found here that stress granule and P-body proteins were localized to a common or merged granule specifically in response to a hypoosmotic stress. Interestingly, these hybrid-bodies were found to be transient structures that were resolved with time into separate P-body and stress granule foci. In all, these data suggest that the identity of an RNP granule is not absolute and that it can vary depending upon the nature of the induction conditions. Since the activities of a granule are likely influenced by its protein constituency, these observations are consistent with the possibility of RNP granules having distinct functions in different cellular contexts.
机译:真核细胞的细胞质是一个高度分隔的空间,除了膜结合的细胞器外,它还包含多种核糖核蛋白(RNP)颗粒。这些RNP颗粒包含特定的蛋白质和mRNA组,并根据特定的环境和发育刺激而形成。这些RNP结构中较好表征的两个是应力颗粒和加工体(P-body),它们从酵母到人类都被保守了。在本报告中,我们研究了调节应力颗粒组装的线索以及应力颗粒与P体病灶之间的关系。通常认为这两个RNP结构是真核细胞中的独立实体。但是,我们在这里发现应激颗粒和P体蛋白特别是针对低渗应激而定位于普通颗粒或融合颗粒。有趣的是,发现这些杂合体是瞬时结构,随着时间的流逝,它们分解为单独的P体和应激颗粒病灶。总之,这些数据表明RNP颗粒的身份不是绝对的,并且其可以根据诱导条件的性质而变化。由于颗粒的活性可能受其蛋白质组成的影响,因此这些观察结果与RNP颗粒在不同细胞环境中具有不同功能的可能性相一致。

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