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Multimerization of Drosophila sperm protein Mst77F causes a unique condensed chromatin structure

机译:果蝇精子蛋白Mst77F的多聚化导致独特的染色质浓缩结构。

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Despite insights on the cellular level, the molecular details of chromatin reorganization in sperm development, which involves replacement of histone proteins by specialized factors to allow ultra most condensation of the genome, are not well understood. Protamines are dispensable for DNA condensation during Drosophila post-meiotic spermatogenesis. Therefore, we analyzed the interaction of Mst77F, another very basic testis-specific protein with chromatin and DNA as well as studied the molecular consequences of such binding. We show that Mst77F on its own causes severe chromatin and DNA aggregation. An intrinsically unstructured domain in the C-terminus of Mst77F binds DNA via electrostatic interaction. This binding results in structural reorganization of the domain, which induces interaction with an N-terminal region of the protein. Via putative cooperative effects Mst77F is induced to multimerize in this state causing DNA aggregation. In agreement, overexpression of Mst77F results in chromatin aggregation in fly sperm. Based on these findings we postulate that Mst77F is crucial for sperm development by giving rise to a unique condensed chromatin structure.
机译:尽管在细胞水平上有见识,但对精子发育中染色质重组的分子细节尚不十分了解,这涉及用专门的因子替代组蛋白,以实现基因组的最大程度的浓缩。在果蝇减数分裂后的精子发生过程中,鱼精蛋白可用于DNA缩合。因此,我们分析了另一种非常基本的睾丸特异性蛋白Mst77F与染色质和DNA的相互作用,并研究了这种结合的分子后果。我们显示Mst77F本身会导致严重的染色质和DNA聚集。 Mst77F的C端中一个固有的非结构化结构域通过静电相互作用与DNA结合。这种结合导致结构域的结构重组,从而诱导与蛋白质N端区域的相互作用。通过推定的协同作用,Mst77F在这种状态下被诱导多聚,导致DNA聚集。一致的是,Mst77F的过表达导致果蝇精子中的染色质聚集。基于这些发现,我们推测Mst77F通过产生独特的浓缩染色质结构对于精子发育至关重要。

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