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Interspecific and Intragenic Differences in Codon Usage Bias Among Vertebrate Myosin Heavy-Chain Genes

机译:椎间肌肌球蛋白重链基因之间密码子使用偏好的种间和种内差异。

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Synonymous codon usage bias is a broadly observed phenomenon in bacteria, plants, and invertebrates and may result from selection. However, the role of selective pressures in shaping codon bias is still controversial in vertebrates, particularly for mammals. The myosin heavy-chain (MyHC) gene family comprises multiple isoforms of the major force-producing contractile protein in cardiac and skeletal muscles. Slow and fast genes are tandemly arrayed on separate chromosomes, and have distinct patterns of functionality and expression in muscle. We analyze both full-length MyHC genes (similar to 5400 bp) and a larger collection of partial sequences at the 3' end (similar to 500 bp). The MyHC isoforms are an interesting system in which to study codon usage bias because of their length, expression, and critical importance to organismal mobility. Codon bias and GC content differs among MyHC genes with regards to functional type, isoform, and position within the gene. Codon bias even varies by isoform within a species. We find evidence in favor of both chromosomal influences on nucleotide composition and selection against nonsense errors (SANE) acting on codon usage in MyHC genes. Intragenic variation in codon bias and elongation rate is significant, with a strong trend for increasing codon bias and elongation rate towards the 3' end of the gene, although the trend is dependent upon the degeneracy class of the codons. Therefore, patterns of codon usage in MyHC genes are consistent with models supporting SANE as a major force shaping codon usage.
机译:同义密码子使用偏好是在细菌,植物和无脊椎动物中广泛观察到的现象,可能是由于选择导致的。但是,选择性压力在形成密码子偏倚中的作用在脊椎动物中,尤其是在哺乳动物中仍然存在争议。肌球蛋白重链(MyHC)基因家族包括心肌和骨骼肌中主要产生力的收缩蛋白的多种同工型。慢和快基因串联排列在不同的染色体上,在肌肉中具有不同的功能和表达模式。我们分析了全长MyHC基因(类似于5400 bp)和3'端的较大部分序列(类似于500 bp)。 MyHC亚型是一个有趣的系统,可在其中研究密码子使用偏倚,因为它们的长度,表达和对有机体迁移至关重要。 MyHC基因之间的密码子偏倚和GC含量在基因的功能类型,同工型和位置方面有所不同。密码子偏倚甚至因物种内的同工型而异。我们发现证据支持染色体对核苷酸组成的影响以及针对MyHC基因密码子使用的无义错误(SANE)选择的支持。密码子偏向性和延伸率的基因内变异是显着的,具有朝着基因的3'端增加密码子偏向性和延伸率的强烈趋势,尽管趋势取决于密码子的简并性类别。因此,MyHC基因中密码子使用的模式与支持SANE作为主要力量塑造密码子使用的模型一致。

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