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首页> 外文期刊>Journal of Muscle Research and Cell Motility >Nucleotide and protein sequences for dog masticatory tropomyosin identify a novel Tpm4 gene product
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Nucleotide and protein sequences for dog masticatory tropomyosin identify a novel Tpm4 gene product

机译:狗咀嚼原肌球蛋白的核苷酸和蛋白质序列鉴定了一种新型的TPM4基因产物

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Jaw-closing muscles of several vertebrate species, including members of Carnivora, express a unique, "masticatory", isoform of myosin heavy chain, along with isoforms of other myofibrillar proteins that are not expressed in most other muscles. It is generally believed that the complement of myofibrillar isoforms in these muscles serves high force generation for capturing live prey, breaking down tough plant material and defensive biting. A unique isoform of tropomyosin (Tpm) was reported to be expressed in cat jaw-closing muscle, based upon two-dimensional gel mobility, peptide mapping, and immunohistochemistry. The objective of this study was to obtain protein and gene sequence information for this unique Tpm isoform. Samples of masseter (a jaw-closing muscle), tibialis (predominantly fast-twitch fibers), and the deep lateral gastrocnemius (predominantly slow-twitch fibers) were obtained from adult dogs. Expressed Tpm isoforms were cloned and sequencing yielded cDNAs that were identical to genomic predicted striated muscle Tpm1.1(St(a,b,b,a)) (historically referred to as alpha Tpm), Tpm2.2(St(a,b,b,a)) (beta Tpm) and Tpm3.12(St(a,b,b,a)) (gamma Tpm) isoforms (nomenclature reflects predominant tissue expression ("St"aEuro"striated muscle) and exon splicing pattern), as well as a novel 284 amino acid isoform observed in jaw-closing muscle that is identical to a genomic predicted product of the Tpm4 gene (delta Tpm) family. The novel isoform is designated as Tpm4.3(St(a,b,b,a)). The myofibrillar Tpm isoform expressed in dog masseter exhibits a unique electrophoretic mobility on gels containing 6 M urea, compared to other skeletal Tpm isoforms. To validate that the cloned Tpm4.3 isoform is the Tpm expressed in dog masseter, E. coli-expressed Tpm4.3 was electrophoresed in the presence of urea. Results demonstrate that Tpm4.3 has identical electrophoretic mobility to the unique dog masseter Tpm isoform and is of different mobility from that of muscle Tpm1.1, Tpm2.2 and Tpm3.12 isoforms. We conclude that the unique Tpm isoform in dog masseter is a product of the Tpm4 gene and that the 284 amino acid protein product of this gene represents a novel myofibrillar Tpm isoform never before observed to be expressed in striated muscle.
机译:包括肉食动物成员在内的几种脊椎动物的下颌闭合肌肉表达了肌球蛋白重链的独特的“咀嚼性”同工型,以及在大多数其他肌肉中未表达的其他肌原纤维蛋白的同工型。人们普遍认为,这些肌肉中的肌原纤维同种型的互补物可以产生很高的力,以捕获活的猎物,分解坚硬的植物材料并进行防御性咬合。据报道,基于二维凝胶迁移率,肽图分析和免疫组织化学,原肌球蛋白(Tpm)的独特同工型在猫颚闭合肌中表达。这项研究的目的是获得这种独特的Tpm亚型的蛋白质和基因序列信息。从成年犬获得咬肌(下颌闭合的肌肉),胫骨(主要是快肌纤维)和深腓肠肌(主要是慢肌纤维)的样品。克隆表达的Tpm同工型并测序,得到与基因组预测的横纹肌Tpm1.1(St(a,b,b,a))(历史上称为alpha Tpm),TPm2.2(St(a,b) ,b,a))(beta Tpm)和Tpm3.12(St(a,b,b,a))(γTpm)亚型(命名法反映了主要的组织表达(“ St” aEuro”横纹肌)和外显子剪接模式),以及在下颚闭合的肌肉中观察到的新的284个氨基酸异构体,该异构体与Tpm4基因(δTpm)家族的基因组预测产物相同。该新的异构体称为Tpm4.3(St(a,b ,b,a))。与其他骨骼Tpm同工型相比,狗咬肌中表达的肌原纤维Tpm同工型在含有6 M尿素的凝胶上表现出独特的电泳迁移率。 ,在尿素存在下对大肠杆菌表达的TPM4.3进行电泳,结果表明TPM4.3与独特的狗咬肌具有相同的电泳迁移率Tpm亚型,与肌肉Tpm1.1,Tpm2.2和Tpm3.12亚型具有不同的迁移率。我们得出的结论是,狗咬肌中独特的Tpm亚型是Tpm4基因的产物,该基因的284个氨基酸蛋白产物代表从未见过在横纹肌中表达的新型肌原纤维Tpm亚型。

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