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Yildirim, K.

Publications and source records attributed to Yildirim, K..

2 recordsLinked to original sources

A centromeric RNA-associated protein complex affects germ line development in Drosophila melanogaster.

In many metazoans, centromeres are embedded in large blocks of highly repetitive (peri-) centromeric heterochromatin from which non-coding RNAs emanate that have been assigned diverse functions in different species. However, little is known about their functional details or regulation. The pericentromere of the X chromosome in Drosophila melanogaster contains a multi mega-base array of the 359 bp satellite repeats from the 1.688 family, which is transcribed into a lncRNA (SAT III RNA). We performed a SAT III RNA pulldown assay and identified a SAT III RNA-associated complex of four previously uncharacterized proteins and show that they affect germline development. These factors not only interact with each other and with SAT III RNA but also co-regulate each other. RNAi depletion of any of the factors leads to severe defects in the developing germline and sterility. Moreover, we show that the complex plays a crucial role in SAT III RNA repression, as RNAi depletion of the factors leads to a drastic increase of SAT III RNA levels. Importantly, genetic reduction of SAT III RNA level in the RNAi-depleted flies partially rescued the germ line defects and infertility phenotype. Based on our results we hypothesize that the identified complex functions in the germline to regulate SAT III RNA levels, possibly to offset effects of chromatin remodelling taking place in the developing germline.

cell biology↗

Redundant functions of the SLC5A transporters Rumpel Kumpel and Bumpel in ensheathing glial cells

Neuronal processing is energy demanding, and relies on sugar metabolism as an energy source. To provide a constant metabolite supply neurons and glial cells express many glucose and lactate transporters of the solute carrier (SLC) 5A family. Here we dissect the partially redundant functions of three highly related glia specific Drosophila genes encoding SLC5A proteins, Rumpel, Bumpel and Kumpel. While knockdown of rumpel causes several behavioral phenotypes, they are less prominent in rumpel mutants. bumpel and kumpel mutants are viable and fertile, lacking discernible phenotypes. However, in bumpel kumpel double mutants and to an even greater extent in rumpel bumpel kumpel triple mutants oogenesis is disrupted at the onset of the vitollegenic phase. This indicates at least partially redundant functions between these genes. Rescue experiments exploring this effect indicate that oogenesis can be affected by CNS glial cells. Moreover, expression of heterologous mammalian SLC5A transporter proteins, with known transport properties, suggest that Bumpel and/or Kumpel transport glucose or lactate. Overall, our results imply a redundancy in SLC5A nutrient sensing functions in Drosophila glial cells, affecting ovarian development and behavior.

neuroscience↗