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Lava Lamp a Novel Peripheral Golgi Protein Is Required for Drosophila melanogaster Cellularization

机译:熔岩灯一种新型的外周高尔基蛋白果蝇黑素细胞需要。

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摘要

Drosophila cellularization and animal cell cytokinesis rely on the coordinated functions of the microfilament and microtubule cytoskeletal systems. To identify new proteins involved in cellularization and cytokinesis, we have conducted a biochemical screen for microfilament/microtubule-associated proteins (MMAPs). 17 MMAPs were identified; seven have been previously implicated in cellularization and/or cytokinesis, including KLP3A, Anillin, Septins, and Dynamin. We now show that a novel MMAP, Lava Lamp (Lva), is also required for cellularization. Lva is a coiled-coil protein and, unlike other proteins previously implicated in cellularization or cytokinesis, it is Golgi associated. Our functional analysis shows that cellularization is dramatically inhibited upon injecting anti–Lva antibodies (IgG and Fab) into embryos. In addition, we show that brefeldin A, a potent inhibitor of membrane trafficking, also inhibits cellularization. Biochemical analysis demonstrates that Lva physically interacts with the MMAPs Spectrin and CLIP190. We suggest that Lva and Spectrin may form a Golgi-based scaffold that mediates the interaction of Golgi bodies with microtubules and facilitates Golgi-derived membrane secretion required for the formation of furrows during cellularization. Our results are consistent with the idea that animal cell cytokinesis depends on both actomyosin-based contraction and Golgi-derived membrane secretion.
机译:果蝇细胞化和动物细胞胞质分裂依赖于微丝和微管细胞骨架系统的协调功能。为了鉴定参与细胞化和胞质分裂的新蛋白,我们对微丝/微管相关蛋白(MMAP)进行了生化筛选。确定了17个MMAP;先前已经有7种涉及细胞化和/或胞质分裂,包括KLP3A,阿尼林,Septins和Dynamin。现在,我们显示了新型MMAP,熔岩灯(Lva),也需要细胞化。 Lva是卷曲螺旋蛋白,与先前牵涉细胞化或胞质分裂的其他蛋白不同,它与高尔基体有关。我们的功能分析表明,将抗Lva抗体(IgG和Fab)注射到胚胎中后,细胞化作用得到了显着抑制。此外,我们表明布雷菲德菌素A,膜运输的有效抑制剂,也抑制细胞化。生化分析表明,Lva与MMAPs Spectrin和CLIP190发生物理相互作用。我们建议Lva和Spectrin可能会形成一个基于高尔基的支架,该支架介导高尔基体与微管的相互作用,并促进细胞化过程中形成沟所需的高尔基衍生的膜分泌。我们的结果与动物细胞胞质分裂依赖于基于肌动球蛋白的收缩和高尔基体来源的膜分泌的想法是一致的。

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