Compartmentalized <i>oskar</i> degradation in the germ plasm safeguards germline development.

Eichler, Catherine E; Hakes, Anna C; Hull, Brooke; Gavis, Elizabeth R · Elife · 2020

basic_science · Level V

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Abstract

Partitioning of mRNAs into ribonucleoprotein (RNP) granules supports diverse regulatory programs within the crowded cytoplasm. At least two types of RNP granules populate the germ plasm, a cytoplasmic domain at the posterior of the <i>Drosophila</i> oocyte and embryo. Germ granules deliver mRNAs required for germline development to pole cells, the germ cell progenitors. A second type of RNP granule, here named founder granules, contains <i>oskar</i> mRNA, which encodes the germ plasm organizer. Whereas <i>oskar</i> mRNA is essential for germ plasm assembly during oogenesis, we show that it is toxic to pole cells. Founder granules mediate compartmentalized degradation of <i>oskar</i> during embryogenesis to minimize its inheritance by pole cells. Degradation of <i>oskar</i> in founder granules is temporally and mechanistically distinct from degradation of <i>oskar</i> and other mRNAs during the maternal-to-zygotic transition. Our results show how compartmentalization in RNP granules differentially controls fates of mRNAs localized within the same cytoplasmic domain.

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