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Developmentally regulated H2Av buffering via dynamic sequestration to lipid droplets in Drosophila embryos

机译:通过动态隔离对果蝇胚胎中的脂质滴的发育调控的H2Av缓冲

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摘要

Regulating nuclear histone balance is essential for survival, yet in early Drosophila melanogaster embryos many regulatory strategies employed in somatic cells are unavailable. Previous work had suggested that lipid droplets (LDs) buffer nuclear accumulation of the histone variant H2Av. Here, we elucidate the buffering mechanism and demonstrate that it is developmentally controlled. Using live imaging, we find that H2Av continuously exchanges between LDs. Our data suggest that the major driving force for H2Av accumulation in nuclei is H2Av abundance in the cytoplasm and that LD binding slows nuclear import kinetically, by limiting this cytoplasmic pool. Nuclear H2Av accumulation is indeed inversely regulated by overall buffering capacity. Histone exchange between LDs abruptly ceases during the midblastula transition, presumably to allow canonical regulatory mechanisms to take over. These findings provide a mechanistic basis for the emerging role of LDs as regulators of protein homeostasis and demonstrate that LDs can control developmental progression.
机译:调节核组蛋白平衡对于存活至关重要,但在果蝇早期果蝇胚胎中,许多无法用于体细胞的调节策略。先前的工作表明脂质滴(LDs)缓冲组蛋白变体H2Av的核积累。在这里,我们阐明了缓冲机制,并证明了它是受发育控制的。使用实时成像,我们发现H2Av在LD之间不断交换。我们的数据表明,细胞核中H2Av积累的主要驱动力是细胞质中的H2Av丰富,而LD结合通过限制这种细胞质池而在动力学上减慢了核的进口。确实,核H2Av积累受总缓冲能力的反调控。在中胚层过渡期间,LD之间的组蛋白交换突然停止,可能是为了使规范的调节机制接管。这些发现为LDs作为蛋白质稳态调节因子的新兴作用提供了机械基础,并证明了LDs可以控制发育进程。

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