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Gene fusion, fission, lateral transfer, and loss: Not-so-rare events in the evolution of eukaryotic ATP citrate lyase

机译:基因融合,裂变,侧向转移和丢失:真核ATP柠檬酸裂解酶进化中的罕见事件

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ATP citrate lyase (ACL) is an enzyme critical to the generation of cytosolic acetyl-CoA in eukaryotes. In most studied organisms, ACL activity is conferred in combination by two proteins, ACLA and ACLB (dsACL); however, animals encode a single-subunit ACL (ssACL) - the result of a gene fusion event. Through phylogenetic analyses, we investigated the evolution of ACL in a broad range of eukaryotes, including numerous microbes (protists). We show that the fused form is not restricted to animals, and is instead widely distributed among eukaryotes. Furthermore, ssACL and dsACL are patchily distributed and appear to be mutually exclusive; both types arose early in eukaryotic evolution. Finally, we present several compelling hypotheses of lateral gene transfer and gene loss, along with the secondary gene fission of ssACL in Ascomycota. Collectively, our in-depth analyses suggest that a complex suite of evolutionary events, usually considered rare, has shaped the evolution of ACL in eukaryotes. (C) 2015 Elsevier Inc. All rights reserved.
机译:ATP柠檬酸裂解酶(ACL)是对真核生物中胞质乙酰辅酶A产生至关重要的酶。在大多数研究过的生物中,ACL活性是由两种蛋白质ACLA和ACLB(dsACL)共同赋予的。但是,动物编码的是单亚基ACL(ssACL),这是基因融合事件的结果。通过系统发育分析,我们研究了ACL在多种真核生物中的进化,包括许多微生物(原生生物)。我们表明,融合形式不限于动物,而是在真核生物中广泛分布。此外,ssACL和dsACL分散分布,并且看起来是互斥的。两种类型都出现在真核生物进化的早期。最后,我们提出了侧向基因转移和基因缺失以及子囊菌中ssACL的次生基因裂变的几个令人信服的假设。总的来说,我们的深入分析表明,通常被认为很少见的一系列复杂的进化事件已经影响了真核生物中ACL的进化。 (C)2015 Elsevier Inc.保留所有权利。

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