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Kawadkar, J.

Publications and source records attributed to Kawadkar, J..

2 recordsLinked to original sources

Essential role for Nup43 in Drosophila fertility and spermiogenesis through Myosin VI-dependent actin cone assembly dynamics

Nuclear pore complexes, composed of nucleoporins (Nups), are critical for bidirectional nucleocytoplasmic transport. Studies on Nups have linked them with various cellular processes, including cell division, contributing significantly to organismal development. Intriguingly, Nup43, an integral member of Nup107 complex, is linked with premature ovarian insufficiency in humans. Here, we report that Nup43 is integral to the maintenance of Drosophila fertility. Both the females and males of Nup43 null mutant are sterile. In Nup43 mutants, embryonic development is halted at the first division stage, and males are sterile due to an arrest at the canoe stage of spermiogenesis. The nuclear elongation, shaping, and actin cone assembly steps of individualization complex formation are adversely affected, suspending sperm maturation. Expression through Nup43 transgene in Nup43 null mutants completely rescues spermiogenesis defects. Actin-based motor, Myosin VI (jar), interacts with Nup43 and rescues the actin cone assembly but not the sterility defects. We have uncovered a novel non-canonical function for Nup43 in Drosophila spermiogenesis, and propose that Nup43, along with jar, facilitates sperm individualization by promoting actin cone assembly.

developmental biology↗

Nup107 is a crucial regulator of Torso-mediated metamorphic transition in Drosophila melanogaster

Nuclear pore complexes (NPCs), composed of nucleoporins (Nups), affect nucleocytoplasmic transport, thus influencing cell division and gene regulation. Nup107 subcomplex members have been studied in housekeeping functions, diseases, and developmental disorders. We report a unique regulatory function for Nup107 in metamorphic transition during Drosophila development. RNAi-mediated Nup107-depleted larvae were arrested in the third-instar larval stage with no signs of pupariation. This lack of pupariation is primarily due to inhibited nuclear translocation and transcriptional activation by EcR. We demonstrate the involvement of Nup107 in the transcription of the Halloween genes, modulating ecdysone biosynthesis and the EcR pathway activation. The regulation of EcR-mediated metamorphosis by the receptor tyrosine kinase, torso, is well documented. Accordingly, overexpression of the torso and MAP-kinase pathway activator, rasV12, in the Nup107 depletion background rescues the phenotypes, implying that Nup107 is an epistatic regulator of Torso-mediated activation of EcR signaling during metamorphosis.

developmental biology↗