首页> 美国卫生研究院文献>Cell Regulation >Myo3A One of Two Class III Myosin Genes Expressed in Vertebrate Retina Is Localized to the Calycal Processes of Rod and Cone Photoreceptors and Is Expressed in the Sacculus
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Myo3A One of Two Class III Myosin Genes Expressed in Vertebrate Retina Is Localized to the Calycal Processes of Rod and Cone Photoreceptors and Is Expressed in the Sacculus

机译:Myo3A在脊椎动物的视网膜中表达的两个III类肌球蛋白基因之一本地化到杆和锥感光细胞的萼片过程并在囊中表达。

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摘要

The striped bass has two retina-expressed class III myosin genes, each composed of a kinase, motor, and tail domain. We report the cloning, sequence analysis, and expression patterns of the long (Myo3A) and short (Myo3B) class III myosins, as well as cellular localization and biochemical characterization of the long isoform, Myo3A. Myo3A (209 kDa) is expressed in the retina, brain, testis, and sacculus, and Myo3B (155 kDa) is expressed in the retina, intestine, and testis. The tails of these two isoforms contain two highly conserved domains, 3THDI and 3THDII. Whereas Myo3B has three IQ motifs, Myo3A has nine IQ motifs, four in its neck and five in its tail domain. Myo3A localizes to actin filament bundles of photoreceptors and is concentrated in the calycal processes. An anti-Myo3A antibody decorates the actin cytoskeleton of rod inner/outer segments, and this labeling is reduced by the presence of ATP. The ATP-sensitive actin association is a feature characteristic of myosin motors. The numerous IQ motifs may play a structural or signaling role in the Myo3A, and its localization to calycal processes indicates that this myosin mediates a local function at this site in vertebrate photoreceptors.
机译:条纹鲈鱼有两个视网膜表达的III类肌球蛋白基因,每个基因由一个激酶,马达和尾域组成。我们报告了长(Myo3A)和短(Myo3B)III类肌球蛋白的克隆,序列分析和表达模式,以及长同种型Myo3A的细胞定位和生化特性。 Myo3A(209 kDa)在视网膜,大脑,睾丸和眼囊中表达,Myo3B(155 kDa)在视网膜,肠和睾丸中表达。这两个同工型的尾部包含两个高度保守的结构域3THDI和3THDII。 Myo3B具有3个IQ图案,而Myo3A具有9个IQ图案,在颈部4个,在尾部5个。 Myo3A定位于光感受器的肌动蛋白丝束,并集中在萼片过程中。抗Myo3A抗体修饰了杆内部/外部节段的肌动蛋白细胞骨架,而ATP的存在会降低这种标记作用。 ATP敏感肌动蛋白缔合是肌球蛋白运动的特征。大量的IQ基序可能在Myo3A中发挥结构或信号作用,并且其定位于肾小管突触表明该肌球蛋白介导了脊椎动物感光细胞中该位点的局部功能。

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