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hnRNP A1 同源物 Hrp36 在黑腹果蝇的正常发育、雌性生育力、ω斑点形成和应激耐受中是必需的。

The hnRNP A1 homolog Hrp36 is essential for normal development, female fecundity, omega speckle formation and stress tolerance in Drosophila melanogaster.

机构信息

Cytogenetics Laboratory, Department of Zoology, Banaras Hindu University, Varanasi 221 005, India.

出版信息

J Biosci. 2012 Sep;37(4):659-78. doi: 10.1007/s12038-012-9239-x.

Abstract

Hrp36/Hrb87F is one of the most abundant and well-characterized hnRNP A homolog in Drosophila and is shown to have roles in regulation of alternative splicing, heterochromatin formation, neurodegeneration, etc. Yet, hrp36 null individuals were reported to be viable and without any apparent phenotype, presumably because of overlapping functions provided by Hrp38 and related proteins. Here we show that loss of both copies of hrp36 gene slows down development with significant reduction in adult life span, decreased female fecundity and high sensitivity to starvation and thermal stresses. In the absence of Hrp36, the nucleoplasmic omega speckles are nearly completely disrupted. The levels of nuclear matrix protein Megator and the chromatin remodeller ISWI are significantly elevated in principal cells of larval Malpighian tubules, which also display additional endoreplication cycles and good polytene chromosomes. We suggest that besides the non-coding hsr omega-n transcripts, the Hrp36 protein is also a core constituent of omega speckles. The heat-shock-induced association of other hnRNPs at the hsr omega locus is affected in hrp36 null cells, which may be one of the reasons for their high sensitivity to cell stress. Therefore, in spite of the functional redundancy provided by Hrp38, Hrp36 is essential for normal development and for survival under conditions of stress.

摘要

Hrp36/Hrb87F 是果蝇中最丰富和特征最明显的 hnRNP A 同源物之一,其在调节可变剪接、异染色质形成、神经退行性变等方面发挥作用。然而,hrp36 缺失个体被报道是存活的,并且没有任何明显的表型,这可能是由于 Hrp38 和相关蛋白提供了重叠的功能。在这里,我们表明,hrp36 基因的两个拷贝的缺失会减缓发育速度,导致成虫寿命显著缩短、雌性生育力下降以及对饥饿和热应激的敏感性增加。在没有 Hrp36 的情况下,核质中的 ω 斑点几乎完全被破坏。核基质蛋白 Megator 和染色质重塑酶 ISWI 的水平在幼虫马尔皮基氏小管的主细胞中显著升高,这些细胞还显示出额外的内复制循环和良好的多线染色体。我们认为,除了非编码的 hsr ω-n 转录本外,Hrp36 蛋白也是 ω 斑点的核心组成部分。在 hsr ω 基因座上,热休克诱导的其他 hnRNPs 的结合在 hrp36 缺失细胞中受到影响,这可能是它们对细胞应激高度敏感的原因之一。因此,尽管 Hrp38 提供了功能冗余,但 Hrp36 对于正常发育和在应激条件下的生存是必不可少的。

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