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Copine A Is Required for Cytokinesis, Contractile Vacuole Function, and Development in Dictyostelium

机译:Copine A是胞嘧啶的胞质分裂,收缩液泡功能和发育所必需的

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Copines make up a family of soluble, calcium-dependent, membrane binding proteins found in a variety of eukaryotic organisms. In an earlier study, we identified six copine genes in the Dictyostelium discoideum genome and focused our studies on cpnA. Our previous localization studies of green fluorescent protein-tagged CpnA in Dictyostelium suggested that CpnA may have roles in contractile vacuole function, endolysosomal trafficking, and development. To test these hypotheses, we created a cpnA? knockout strain, and here we report the initial characterization of the mutant phenotype. The cpnA? cells exhibited normal growth rates and a slight cytokinesis defect. When placed in starvation conditions, cpnA? cells appeared to aggregate into mounds and form fingers with normal timing; however, they were delayed or arrested in the finger stage. When placed in water, cpnA? cells formed unusually large contractile vacuoles, indicating a defect in contractile vacuole function, while endocytosis and phagocytosis rates for the cpnA? cells were similar to those seen for wild-type cells. These studies indicate that CpnA plays a role in cytokinesis and contractile vacuole function and is required for normal development, specifically in the later stages prior to culmination. We also used real-time reverse transcription-PCR to determine the expression patterns of all six copine genes during development. The six copine genes were expressed in vegetative cells, with each gene exhibiting a distinct pattern of expression throughout development. All of the copine genes except cpnF showed an upregulation of mRNA expression at one or two developmental transitions, suggesting that copines may be important regulators of Dictyostelium development.
机译:pine构成了一系列在各种真核生物中发现的可溶性,钙依赖性膜结合蛋白。在一项较早的研究中,我们在 Dictyostelium discoideum 基因组中鉴定了六个Copine基因,并将研究重点放在了 cpnA 上。我们以前在 Dytyostelium 中标记绿色荧光蛋白的CpnA的定位研究表明,CpnA可能在收缩液泡功能,溶酶体运输和发育中起作用。为了检验这些假设,我们创建了一个 cpnA 敲除菌株,在这里我们报告了该突变表型的初始特征。 cpnA 细胞表现出正常的生长速率和轻微的胞质分裂缺陷。当处于饥饿状态时, cpnA 细胞似乎聚集成丘并在正常时间形成手指。然而,他们在手指阶段被延迟或逮捕。当放置在水中时, cpnA 细胞会形成异常大的收缩液泡,表明收缩液泡功能有缺陷,而细胞的内吞作用和吞噬率 cpnA 细胞类似于野生型细胞。这些研究表明,CpnA在胞质分裂和收缩液泡功能中起作用,并且是正常发育所必需的,特别是在高潮之前的后期。我们还使用实时逆转录PCR来确定发育过程中所有六个copine基因的表达模式。六个copine基因在营养细胞中表达,每个基因在整个发育过程中均表现出不同的表达模式。除 cpnF 以外,所有的copine基因在一个或两个发育过渡期均表达mRNA表达上调,表明copines可能是 Dictyostelium 发育的重要调控因子。

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