Ruppert C, Kroschewski R, Bähler M
Friedrich-Miescher Laboratorium, Max-Planck-Gesellschaft, Tübingen, Germany.
J Cell Biol. 1993 Mar;120(6):1393-403. doi: 10.1083/jcb.120.6.1393.
We have identified, characterized and cloned a novel mammalian myosin-I motor-molecule, called myr 1 (myosin-I from rat). Myr 1 exists in three alternative splice forms: myr 1a, myr 1b, and myr 1c. These splice forms differ in their numbers of putative calmodulin/light chain binding sites. Myr 1a-c were selectively released by ATP, bound in a nucleotide-dependent manner to F-actin and exhibited amino acid sequences characteristic of myosin-I motor domains. In addition to the motor domain, they contained a regulatory domain with up to six putative calmodulin/light chain binding sites and a tail domain. The tail domain exhibited 47% amino acid sequence identity to the brush border myosin-I tail domain, demonstrating that myr 1 is related to the only other mammalian myosin-I motor molecule that has been characterized so far. In contrast to brush border myosin-I which is expressed in mature enterocytes, myr 1 splice forms were differentially expressed in all tested tissues. Therefore, myr 1 is the first mammalian myosin-I motor molecule with a widespread tissue distribution in neonatal and adult tissues. The myr 1a splice form was preferentially expressed in neuronal tissues. Its expression was developmentally regulated during rat forebrain ontogeny and subcellular fractionation revealed an enrichment in purified growth cone particles, data consistent with a role for myr 1a in neuronal development.
我们已经鉴定、表征并克隆了一种新的哺乳动物肌球蛋白-I运动分子,称为myr 1(来自大鼠的肌球蛋白-I)。Myr 1以三种可变剪接形式存在:myr 1a、myr 1b和myr 1c。这些剪接形式在其假定的钙调蛋白/轻链结合位点数量上有所不同。Myr 1a - c被ATP选择性释放,以核苷酸依赖性方式与F - 肌动蛋白结合,并表现出肌球蛋白-I运动结构域的氨基酸序列特征。除了运动结构域,它们还包含一个具有多达六个假定钙调蛋白/轻链结合位点的调节结构域和一个尾部结构域。该尾部结构域与刷状缘肌球蛋白-I尾部结构域的氨基酸序列一致性为47%,表明myr 1与迄今为止已表征的唯一另一种哺乳动物肌球蛋白-I运动分子相关。与在成熟肠上皮细胞中表达 的刷状缘肌球蛋白-I不同,myr 1剪接形式在所有测试组织中差异表达。因此,myr 1是第一种在新生儿和成年组织中具有广泛组织分布的哺乳动物肌球蛋白-I运动分子。Myr 1a剪接形式在神经组织中优先表达。其表达在大鼠前脑个体发育过程中受到发育调控,亚细胞分级分离显示在纯化的生长锥颗粒中富集,这些数据与myr 1a在神经元发育中的作用一致。