果蝇神经元线粒体钙摄取1的抑制。

P. G. M'Angale, B. Staveley
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引用次数: 8

摘要

线粒体钙摄取1 (MICU1)是线粒体钙单转运蛋白的一个调控亚基,在钙感知中起重要作用。它包含两个EF-hand结构域,这些结构域在从原生动物到植物和后生动物的各种物种中都很保守。哺乳动物MICU1功能的丧失可归因于几种涉及运动功能障碍的神经系统疾病。在美国国家生物技术信息中心(National Centre for Biotechnology Information, NCBI)的HomoloGene数据库中,果蝇CG4495基因被鉴定为MICU1的推定同源基因。与先前研究表明MICU1功能丧失生物体中神经疾病和运动缺陷的发展一致,我们试图鉴定CG4495/MICU1在果蝇神经元中的功能。我们分析了这些果蝇的生存和运动能力,并对果蝇发育中的眼睛进行了生物特征分析。诱导性RNA干扰介导的CG4495/MICU1在果蝇dc- gal4表达神经元中的抑制表现为存活降低以及运动能力的过早丧失。由于支持生存的Bcl-2家族基因已被证明对线粒体具有保护作用,而CG4495/MICU1具有线粒体靶向序列,我们试图通过过表达果蝇中唯一的Bcl-2同源物Buffy来挽救由于CG4495/MICU1抑制而导致的表型。CG4495/MICU1- rnai与Buffy共表达,抑制了CG4495/MICU1诱导的表型。随后,CG4495/MICU1在果蝇发育中的眼(一个富含神经元的器官)中受到抑制,导致小眼数量减少,小眼阵列高度融合。这些发育性眼缺陷通过过度表达巴菲而得以挽救。我们的研究表明MICU1在果蝇神经元的正常功能中起重要作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Inhibition of mitochondrial calcium uptake 1 in Drosophila neurons.
The mitochondrial calcium uptake 1 (MICU1) is a regulatory subunit of the mitochondrial calcium uniporter that plays an important role in calcium sensing. It contains two EF-hand domains that are well conserved across diverse species from protozoa to plants and metazoans. The loss of MICU1 function in mammals is attributed to several neurological disorders that involve movement dysfunction. The CG4495 gene in Drosophila melanogaster was identified as a putative homolog of MICU1 in the HomoloGene database of the National Centre for Biotechnology Information (NCBI). In agreement with previous studies that have shown the development of neurological disorders and movement defects in MICU1 loss-of-function organisms, we attempted to identify the function of CG4495/MICU1 in Drosophila neurons. We analyzed survival and locomotor ability of these flies and additionally performed biometric analysis of the Drosophila developing eye. The inducible RNA interference-mediated inhibition of CG4495/MICU1 in the Ddc-Gal4-expressing neurons of Drosophila presented with reduction in survival coupled with a precocious loss of locomotor ability. Since the pro-survival Bcl-2 family genes have been shown to be protective towards mitochondria, and CG4495/MICU1 has a mitochondrial targeting sequence, we attempted to rescue the phenotypes resulting from the inhibition of CG4495/MICU1 by overexpressing Buffy, the sole Bcl-2 homologue in Drosophila. The co-expression of CG4495/MICU1-RNAi along with Buffy resulted in the suppression of the phenotypes induced by the inhibition of CG4495/MICU1. Subsequently, the inhibition of CG4495/MICU1 in the Drosophila developing eye, a neuron-rich organ, resulted in reduced number of ommatidia and a highly fused ommatidial array. These developmental eye defects were rescued by the overexpression of Buffy. Our study suggests an important role for MICU1 in the normal function of neurons in Drosophila.
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