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Different positions of tropomyosin isoforms on actin filament are determined by specific sequences of end-to-end overlaps.

机译:Tropomyosin同种型在肌动蛋白丝上的不同位置通过端到端的特定序列确定。

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Tropomyosins are dimeric rod-like proteins which polymerize along actin filaments and regulate interactions with other actin-binding proteins. Homologous sequences responsible for the binding of tropomyosin to consecutive actin monomers repeat along tropomyosin and are called actin-binding periods. In this work, the localization of tropomyosin isoforms on actin alone and on actin-myosin complex was evaluated by measuring Forster resonance energy transfer (FRET) distances between a donor (AEDANS) attached to either the N-terminal actin-binding period 1 or to the central actin-binding period 5 and an acceptor (DABMI) bound to actin's Cys374. The recombinant -tropomyosin isoforms-TM2, TM5a, and TM1b9a, used in this study, had various amino acid sequences of the N- and C-termini forming the end-to-end overlap. Although the sequences of actin-binding period 5 of the three isoforms were identical, the donor-acceptor distances calculated for each isoform varied between 38.6 and 41.5 A. Differences in FRET distances between the three tropomyosin isoforms labeled in actin-binding period 1 varied between 34.8 and 40.2 A. Rigor binding of myosin heads to actin increased all measured distances. The degree and cooperativity of myosin-induced shift was different for each of the isoforms and actin-binding periods. The structural differences correlate with cooperative regulation of actin-activated S1 ATPase by the three tropomyosins. The results indicate that amino acid sequences of the end-to-end overlap determine specific orientation of tropomyosin isoform on actin. This can be important for steric and cooperative regulation of the actin filament and determine functional specificity of multiple tropomyosin isoforms present in eucaryotic cells.
机译:Tropomyosins是二聚体棒状蛋白,其沿肌动蛋白长丝聚合并调节与其他肌动蛋白结合蛋白的相互作用。负责对冠状阴性蛋白酶的结合的同源序列沿着对嗜胞苷重复并称为肌动蛋白结合时期。在这项工作中,通过测量附着于N-末端肌动蛋白结合时期1或其至N-末端肌动蛋白结合时期1或其至的抗喇叭谐振能量转移(FRET)距离来评估种族肌蛋白上的对肌动蛋白和肌动蛋白肌菌素复合物的对肌动蛋白 - 肌球蛋白复合物的定位。中央肌动蛋白结合时期5和与肌动蛋白的Cys374结合的受体(dabmi)。在本研究中使用的重组 - 过血素同种型-TM2,TM5A和TM1B9A具有形成端到端重叠的N-和C-Termini的各种氨基酸序列。尽管三种同种型的肌动蛋白结合时段5的序列是相同的,但是对于每个同种型计算的供体受体距离在38.6和41.5a之间变化。在肌动蛋白结合时间1中标记的三种对杂种植物同种型之间的凹痕距离之间的差异变化34.8和40.2 A.肌球蛋白头的严格结合actin增加了所有测量的距离。对于每个同种型和肌动蛋白结合时期,肌苷诱导的偏移的程度和合作率不同。结构差异与三种刺激素的肌动蛋白激活的S1 ATP酶的协同调节相关。结果表明,端到端重叠的氨基酸序列决定了肌动蛋白上的对肌瘤同种型的特定取向。这对于肌动蛋白长丝的空间和协作调节具有重要的是,并确定在基核细胞中存在的多种肌瘤同种型的功能特异性。

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