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Phosphorylation Properties of the N-Terminal Region of Twitchin from Molluscan Catch Muscle
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作者 Daisuke Funabara Yuuki Nishimura Satoshi Kanoh 《American Journal of Molecular Biology》 2019年第3期110-120,共11页
Molluscan smooth muscles, such as the bivalve adductor muscles and the mussel anterior byssus retractor muscles (ABRM), exhibit a unique contraction called “catch”. Catch contraction is regulated through twitchin ph... Molluscan smooth muscles, such as the bivalve adductor muscles and the mussel anterior byssus retractor muscles (ABRM), exhibit a unique contraction called “catch”. Catch contraction is regulated through twitchin phosphorylation and dephosphorylation. Twitchin from the ABRM of the Mediterranean mussel, Mytilus galloprovincialis, is phosphorylated by cAMP-dependent protein kinase (PKA), and PKA phosphorylation sites are located in both the N- and C-terminal regions of the twitchin molecule. The D2 site, which is adjacently located to the C-terminus, participates in forming a myosin, actin, and twitchin complex that is thought to contribute towards the maintenance of tension in the catch state. In contrast, although it has been reported to interact with thin-filaments, the molecular function of the region including the D1 site has remained largely unstudied. Three additional PKA consensus sequences were identified near the D1 site;however, it was not known if these sites could be directly phosphorylated by PKA. Here, we performed phosphorylation assays to identify phosphorylation sites near the D1 site using recombinant protein variants (TWD1-SSSS, TWD1-AAAS, TWD1-AASA, TWD1-ASAA, TWD1-SAAA, and TWD1-AAAA). All variants, except TWD1-AAAA (where all phosphorylatable serine residues were replaced by alanines), were phosphorylated by PKA. The four phosphorylation sites were named D1-1, D1-2, D1-3, and D1-4 (the originally identified D1) in order from the N-terminus. Phosphorylation assays using a 1/12.5 weight ratio of PKA to each TWD1 variant revealed that D1-4 was the most rapidly phosphorylated, closely followed by D1-1. However, D1-2 and D1-3 were phosphorylated at a lower level under equivalent conditions and were not phosphorylated when PKA was incubated with each TWD1 variant at a 1/100 weight ratio. Furthermore, we observed that TWD1-SSSS was phosphorylated in a stepwise fashion. These findings contribute towards the elucidation of the function of the twitchin D1 region in the regulatory system of catch contraction. 展开更多
关键词 CATCH CONTRACTION PHOSPHORYLATION PHOS-TAG Gel ELECTROPHORESIS PKA twitchin
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生物信息学方法预测高分子蛋白质twitchin的一级结构
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作者 包玉龙 郑源强 +4 位作者 丁枫 吕璐 薛成芳 韩新荣 石艳春 《中国生物制品学杂志》 CAS CSCD 2015年第2期138-141,共4页
目的预测高分子蛋白质twitchin基因的exon-intron结构,并确定其一级结构及结构域。方法利用生物信息学方法,从霸王莲花青螺(Lottia gigantea)基因组数据中探索有无twitchin的基因,预测twitchin的基因exon-intron结构及twitchin m RNA组... 目的预测高分子蛋白质twitchin基因的exon-intron结构,并确定其一级结构及结构域。方法利用生物信息学方法,从霸王莲花青螺(Lottia gigantea)基因组数据中探索有无twitchin的基因,预测twitchin的基因exon-intron结构及twitchin m RNA组成,从而确定该蛋白的一级结构,并检测其结构域;与同源蛋白进行序列比对,绘制系统树,了解其在系统进化中的位置。结果在霸王莲花青螺基因组数据中存在twitchin的基因,且该蛋白基因在基因组中横跨220 000 bp的序列区域(「sca_38」的149 839-367 346区域),预测编码twitchin的m RNA约由13 000 bp组成,推算相对分子质量约为480 000,该蛋白由Ig、Fn、kinase结构域和unique序列组成,与贻贝twitchin相比较,他们之间具有较高的同源性。结论在霸王莲花青螺中存在twitchin的基因,预测和确定了该蛋白质的一级结构。 展开更多
关键词 生物信息学 基因组 twitchin 同源蛋白
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