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Evolutionary Paths of the cAMP-Dependent Protein Kinase (PKA) Catalytic Subunits

机译:cAMP依赖性蛋白激酶(PKA)催化亚基的进化途径。

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摘要

3′,5′-cyclic adenosine monophosphate (cAMP) dependent protein kinase or protein kinase A (PKA) has served as a prototype for the large family of protein kinases that are crucially important for signal transduction in eukaryotic cells. The PKA catalytic subunits Cα and Cβ, encoded by the two genes PRKACA and PRKACB, respectively, are among the best understood and characterized human kinases. Here we have studied the evolution of this gene family in chordates, arthropods, mollusks and other animals employing probabilistic methods and show that Cα and Cβ arose by duplication of an ancestral PKA catalytic subunit in a common ancestor of vertebrates. The two genes have subsequently been duplicated in teleost fishes. The evolution of the PRKACG retroposon in simians was also investigated. Although the degree of sequence conservation in the PKA Cα/Cβ kinase family is exceptionally high, a small set of signature residues defining Cα and Cβ subfamilies were identified. These conserved residues might be important for functions that are unique to the Cα or Cβ clades. This study also provides a good example of a seemingly simple phylogenetic problem which, due to a very high degree of sequence conservation and corresponding weak phylogenetic signals, combined with problematic nonphylogenetic signals, is nontrivial for state-of-the-art probabilistic phylogenetic methods.
机译:3',5'-环磷酸腺苷(cAMP)依赖性蛋白激酶或蛋白激酶A(PKA)已成为蛋白质激酶大家族的原型,这些家族对于真核细胞中的信号转导至关重要。分别由两个基因PRKACA和PRKACB编码的PKA催化亚基Cα和Cβ是人们最了解和表征的人类激酶之一。在这里,我们使用概率方法研究了该基因家族在脊索动物,节肢动物,软体动物和其他动物中的进化,并表明Cα和Cβ是通过在脊椎动物的共同祖先中复制祖先PKA催化亚基而产生的。这两个基因随后在硬骨鱼中复制。还研究了猿猴PRKACG逆转录子的演变。尽管PKACα/Cβ激酶家族中的序列保守程度异常高,但鉴定出了定义Cα和Cβ亚家族的少量签名残基。这些保守的残基对于Cα或Cβ进化枝特有的功能可能很重要。这项研究也提供了一个看似简单的系统发育问题的很好的例子,由于高度的序列保守性和相应的较弱的系统发生信号,加上有问题的非系统发生信号,对于最先进的概率系统发生方法而言,这是不平凡的。

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