Department of Biotechnology, Presidency University, Kolkata, India.
Mol Microbiol. 2012 Feb;83(3):548-64. doi: 10.1111/j.1365-2958.2011.07950.x. Epub 2012 Jan 4.
cAMP-mediated responses act as modulators of environmental sensing and cellular differentiation of many kinetoplastidae parasites including Leishmania. Although cAMP synthesizing (adenylate cyclase) and degrading (phosphodiesterase) enzymes have been cloned and characterized from Leishmania, no cAMP-binding effector molecule has yet been identified from this parasite. In this study, a regulatory subunit of cAMP-dependent protein kinase (Ldpkar1), homologous to mammalian class I cAMP-dependent protein kinase regulatory subunit, has been identified from L. donovani. Further characterization suggested possible interaction of LdPKAR1 with PKA catalytic subunits and inhibition of PKA activity. This PKA regulatory subunit is expressed in all life cycle stages and its expression attained maximum level in stationary phase promastigotes, which are biochemically similar to the infective metacyclic promastigotes. Starvation condition, the trigger for metacyclogenesis in the parasite, elevates LdPKAR1 expression and under starvation condition promastigotes overexpressing Ldpkar1 attained metacyclic features earlier than normal cells. Furthermore, Ldpkar1 overexpression accelerates autophagy, a starvation-induced cytological event necessary for metacyclogenesis and amastigote formation. Conditional silencing of Ldpkar1 delays the induction of autophagy in the parasite. The study, for the first time, reports the identification of a functional cAMP-binding effector molecule from Leishmania that may modulate important cytological events affecting metacyclogenesis.
cAMP 介导的反应是许多动基体目寄生虫(包括利什曼原虫)环境感应和细胞分化的调节剂。尽管已经从利什曼原虫中克隆和表征了 cAMP 合成(腺苷酸环化酶)和降解(磷酸二酯酶)酶,但尚未从该寄生虫中鉴定出 cAMP 结合效应分子。在这项研究中,从 L. donovani 中鉴定出了 cAMP 依赖性蛋白激酶的调节亚基(Ldpkar1),与哺乳动物 I 类 cAMP 依赖性蛋白激酶调节亚基同源。进一步的特征表明,LdPKAR1 可能与 PKA 催化亚基相互作用,并抑制 PKA 活性。这种 PKA 调节亚基在所有生活史阶段都有表达,其表达在静止期前体鞭毛体中达到最高水平,前体鞭毛体在生物化学上与感染性的循环前体鞭毛体相似。饥饿条件是寄生虫中循环发生的触发因素,可提高 LdPKAR1 的表达,并且在饥饿条件下,过度表达 Ldpkar1 的前体鞭毛体比正常细胞更早地获得循环前体鞭毛体特征。此外,Ldpkar1 的过表达加速了自噬,这是循环发生和无鞭毛体形成所必需的饥饿诱导的细胞学事件。Ldpkar1 的条件沉默会延迟寄生虫中自噬的诱导。该研究首次报道了从利什曼原虫中鉴定出一种功能性的 cAMP 结合效应分子,它可能调节影响循环发生的重要细胞学事件。