Nicolao María Celeste, Cumino Andrea C
Laboratorio de Zoonosis Parasitarias, Departamento de Biología, Facultad de Ciencias Exactas y Naturales, Universidad Nacional de Mar del Plata (UNMdP), Funes 3350, Nivel Cero, 7600 Mar del Plata, Argentina; Consejo Nacional de Investigaciones Científicas y Técnicas (CONICET), Argentina.
Laboratorio de Zoonosis Parasitarias, Departamento de Biología, Facultad de Ciencias Exactas y Naturales, Universidad Nacional de Mar del Plata (UNMdP), Funes 3350, Nivel Cero, 7600 Mar del Plata, Argentina; Consejo Nacional de Investigaciones Científicas y Técnicas (CONICET), Argentina; Departamento de Química, Facultad de Ciencias Exactas y Naturales, Universidad Nacional de Mar del Plata (UNMdP), Funes 3350, Nivel 2, 7600 Mar del Plata, Argentina.
Acta Trop. 2015 Jun;146:141-51. doi: 10.1016/j.actatropica.2015.03.016. Epub 2015 Mar 25.
Calcineurin (CaN) is a Ca(2+)-calmodulin activated serine-threonine protein phosphatase that couples the local or global calcium signals, thus controlling important cellular functions in physiological and developmental processes. The aim of this study was to characterize CaN in Echinococcus granulosus (Eg-CaN), a human cestode parasite of clinical importance, both functionally and molecularly. We found that the catalytic subunit isoforms have predicted sequences of 613 and 557 amino acids and are substantially similar to those of the human counterpart, except for the C-terminal end. We also found that the regulatory subunit consists of 169 amino acids which are 87% identical to the human ortholog. We cloned a cDNA encoding for one of the two catalytic subunit isoforms of CaN (Eg-can-A1) as well as the only copy of the Eg-can-B gene, both constitutively transcribed in all Echinococcus larval stages and responsible for generating a functionally active heterodimer. Eg-CaN native enzyme has phosphatase activity, which is enhanced by Ca(2+)/Ni(2+) and reduced by cyclosporine A and Ca(2+) chelators. Participation of Eg-CaN in exocytosis was demonstrated using the FM4-64 probe and Eg-CaN-A was immunolocalized in the cytoplasm of tegumental cells, suckers and excretory bladder of protoscoleces. We also showed that the Eg-can-B transcripts were down-regulated in response to low Ca(2+) intracellular level, in agreement with decreased enzyme activity. Confocal microscopy revealed a striking pattern of Eg-CaN-A in discrete fluorescent spots in the protoscolex posterior bladder and vesicularized protoscoleces beginning the vesicular differentiation. In contrast, Eg-CaN-A was undetectable during the pre-microcyst closing stage while a high DDX-like RNA helicase expression was evidenced. Finally, we identified and analyzed the expression of CaN-related endogenous regulators.
钙调神经磷酸酶(CaN)是一种由Ca(2+) - 钙调蛋白激活的丝氨酸 - 苏氨酸蛋白磷酸酶,它能耦合局部或整体钙信号,从而在生理和发育过程中控制重要的细胞功能。本研究旨在从功能和分子层面表征细粒棘球绦虫(Eg - CaN)中的CaN,细粒棘球绦虫是一种具有临床重要性的人体绦虫寄生虫。我们发现催化亚基同工型预测序列分别为613和557个氨基酸,除了C末端外,与人类对应序列基本相似。我们还发现调节亚基由169个氨基酸组成,与人类直系同源物的一致性为87%。我们克隆了编码CaN两种催化亚基同工型之一(Eg - can - A1)以及Eg - can - B基因唯一拷贝的cDNA,二者在所有棘球绦虫幼虫阶段均组成性转录,并负责产生功能活性异二聚体。Eg - CaN天然酶具有磷酸酶活性,Ca(2+)/Ni(2+)可增强其活性,环孢素A和Ca(2+)螯合剂可降低其活性。使用FM4 - 64探针证明了Eg - CaN参与胞吐作用,并且Eg - CaN - A免疫定位在原头蚴皮层细胞、吸盘和排泄囊的细胞质中。我们还表明,响应细胞内低Ca(2+)水平,Eg - can - B转录本下调,这与酶活性降低一致。共聚焦显微镜显示,在原头蚴后囊泡和开始囊泡分化的囊泡化原头蚴中的离散荧光斑点中,Eg - CaN - A呈现出显著的模式。相比之下,在微囊前期关闭阶段未检测到Eg - CaN - A,而此时DDX样RNA解旋酶表达较高。最后,我们鉴定并分析了CaN相关内源性调节因子的表达。