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首页> 外文期刊>Eukaryotic cell >Evidence that the Entamoeba histolytica Mitochondrial Carrier Family Links Mitosomal and Cytosolic Pathways through Exchange of 3′-Phosphoadenosine 5′-Phosphosulfate and ATP
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Evidence that the Entamoeba histolytica Mitochondrial Carrier Family Links Mitosomal and Cytosolic Pathways through Exchange of 3′-Phosphoadenosine 5′-Phosphosulfate and ATP

机译:溶血性变形虫线粒体载体家族通过交换3'-磷酸腺苷5'-磷酸硫酸盐和ATP连接线粒体和胞质途径的证据

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Entamoeba histolytica, a microaerophilic protozoan parasite, possesses mitosomes. Mitosomes are mitochondrion-related organelles that have largely lost typical mitochondrial functions, such as those involved in the tricarboxylic acid cycle and oxidative phosphorylation. The biological roles of Entamoeba mitosomes have been a long-standing enigma. We previously demonstrated that sulfate activation, which is not generally compartmentalized to mitochondria, is a major function of E. histolytica mitosomes. Sulfate activation cooperates with cytosolic enzymes, i.e., sulfotransferases (SULTs), for the synthesis of sulfolipids, one of which is cholesteryl sulfate. Notably, cholesteryl sulfate plays an important role in encystation, an essential process in the Entamoeba life cycle. These findings identified a biological role for Entamoeba mitosomes; however, they simultaneously raised a new issue concerning how the reactions of the pathway, separated by the mitosomal membranes, cooperate. Here, we demonstrated that the E. histolytica mitochondrial carrier family (EhMCF) has the capacity to exchange 3′-phosphoadenosine 5′-phosphosulfate (PAPS) with ATP. We also confirmed the cytosolic localization of all the E. histolytica SULTs, suggesting that in Entamoeba, PAPS, which is produced through mitosomal sulfate activation, is translocated to the cytosol and becomes a substrate for SULTs. In contrast, ATP, which is produced through cytosolic pathways, is translocated into the mitosomes and is a necessary substrate for sulfate activation. Taking our findings collectively, we suggest that EhMCF functions as a PAPS/ATP antiporter and plays a crucial role in linking the mitosomal sulfate activation pathway to cytosolic SULTs for the production of sulfolipids.
机译:变形虫Entamoeba histolytica是一种微需氧的原生动物寄生虫,具有线粒体。线粒体是与线粒体相关的细胞器,已经大大丧失了典型的线粒体功能,例如那些参与三羧酸循环和氧化磷酸化的细胞器。变形虫线粒体的生物学作用是一个长期的谜。我们以前证明硫酸盐的激活,这通常不会分隔到线粒体,是溶组织性大肠杆菌纤溶体的主要功能。硫酸盐活化与胞质酶(即磺基转移酶(SULTs))协同作用以合成硫脂,其中之一是胆固醇胆固醇硫酸盐。值得注意的是,胆甾醇硫酸盐在进入过程中起着重要的作用,而进入过程是Entamoeba生命周期中必不可少的过程。这些发现确定了Entamoeba线粒体的生物学作用。然而,他们同时提出了一个新问题,即被线粒体膜分隔的途径的反应如何协同作用。在这里,我们证明了溶血性大肠杆菌线粒体载体家族(EhMCF)具有与ATP交换3'-磷酸腺苷5'-磷酸硫酸盐(PAPS)的能力。我们还证实了所有溶组织性大肠杆菌的SULTs在胞质中的定位,这表明在Entamoeba中,通过硫酸硫酸化的微粒体激活产生的PAPS易位到细胞质中,并成为SULTs的底物。相反,通过细胞溶质途径产生的ATP易位到线粒体中,并且是硫酸盐激活的必要底物。综合考虑我们的发现,我们建议EhMCF发挥PAPS / ATP反转运蛋白的作用,并且在将线粒体硫酸盐活化途径与胞质SULT连接产生脂质的过程中起关键作用。

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