Drosophila melanogaster Scramblases modulate synaptic transmission

Author:

Acharya Usha12,Edwards Michael Beth1,Jorquera Ramon A.34,Silva Hugo3,Nagashima Kunio5,Labarca Pedro3,Acharya Jairaj K.1

Affiliation:

1. Laboratory of Protein Dynamics and Signaling, National Cancer Institute Frederick, Frederick, MD 21702

2. Program in Gene Function and Expression, University of Massachusetts Medical School, Worcester, MA 01605

3. Centro de Estudios Científicos, Valdivia 511-0246, Chile

4. Universidad Austral de Chile, Valdivia 509-9200, Chile

5. EM Facility/Image Analysis Laboratory, Science Applications International Corporation Frederick, Frederick, MD 21702

Abstract

Scramblases are a family of single-pass plasma membrane proteins, identified by their purported ability to scramble phospholipids across the two layers of plasma membrane isolated from platelets and red blood cells. However, their true in vivo role has yet to be elucidated. We report the generation and isolation of null mutants of two Scramblases identified in Drosophila melanogaster. We demonstrate that flies lacking either or both of these Scramblases are not compromised in vivo in processes requiring scrambling of phospholipids. Instead, we show that D. melanogaster lacking both Scramblases have more vesicles and display enhanced recruitment from a reserve pool of vesicles and increased neurotransmitter secretion at the larval neuromuscular synapses. These defects are corrected by the introduction of a genomic copy of the Scramb 1 gene. The lack of phenotypes related to failure of scrambling and the neurophysiological analysis lead us to propose that Scramblases play a modulatory role in the process of neurotransmission.

Publisher

Rockefeller University Press

Subject

Cell Biology

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