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调节性轻链苏氨酸-18位点的磷酸化会使平滑肌肌球蛋白II的ATP酶活性和运动特性解离。

Phosphorylation on threonine-18 of the regulatory light chain dissociates the ATPase and motor properties of smooth muscle myosin II.

作者信息

Bresnick A R, Wolff-Long V L, Baumann O, Pollard T D

机构信息

Department of Cell Biology and Anatomy, Johns Hopkins School of Medicine, Baltimore, Maryland 21205, USA.

出版信息

Biochemistry. 1995 Oct 3;34(39):12576-83. doi: 10.1021/bi00039a012.

Abstract

We cloned the full-length cDNA for the cytoplasmic myosin II regulatory light chain (RLC) from a stage 1-2 Xenopus oocyte library. The Xenopus RLC is 94% identical to the chicken smooth muscle myosin RLC. All of the protein kinase C and myosin light chain kinase phosphorylation sites are conserved. Using trifluoperazine [Trybus, K. M., Waller, G. S., & Chatman, T. A. (1994) J. Cell Biol. 124, 963-969], we removed the RLC of smooth muscle myosin and replaced it with recombinant Xenopus RLCs. The wild-type Xenopus RLC substitutes for the gizzard RLC in actin-activated ATPase and in vitro motility assays. We made alanine substitutions of the two residues phosphorylated by myosin light chain kinase, Ser-19 and Thr-18. All of the myosin hybrids, regardless of their mutations or phosphorylation, have similar K+EDTA ATPase activities. As expected, the T18A, S19A hybrid had no actin-activated ATPase, whereas the T18A hybrid phosphorylated on Ser-19 had an actin-activated ATPase similar to that of wild-type hybrids phosphorylated only on Ser-19. The actin-activated ATPase of myosin phosphorylated only on Thr-18 is approximately 15-fold lower than that of myosin phosphorylated on Ser-19. Phosphorylation of either Ser-19 or Thr-18 permits the formation of filaments. Remarkably, in the gliding filament assay, myosin phosphorylated only on Thr-18 moves actin filaments at velocities similar to myosin phosphorylated on Ser-19 or both Thr-18 and Ser-19.

摘要

我们从1-2期非洲爪蟾卵母细胞文库中克隆了细胞质肌球蛋白II调节轻链(RLC)的全长cDNA。非洲爪蟾RLC与鸡平滑肌肌球蛋白RLC有94%的同源性。所有蛋白激酶C和肌球蛋白轻链激酶的磷酸化位点都是保守的。我们使用三氟拉嗪[Trybus, K. M., Waller, G. S., & Chatman, T. A. (1994) J. Cell Biol. 124, 963 - 969]去除平滑肌肌球蛋白的RLC,并用重组非洲爪蟾RLC进行替换。在肌动蛋白激活的ATP酶和体外运动分析中,野生型非洲爪蟾RLC替代了砂囊RLC。我们对被肌球蛋白轻链激酶磷酸化的两个残基Ser-19和Thr-18进行了丙氨酸替换。所有肌球蛋白杂种,无论其突变或磷酸化状态如何,都具有相似的K + EDTA ATP酶活性。正如预期的那样,T18A、S19A杂种没有肌动蛋白激活的ATP酶,而在Ser-19上磷酸化的T18A杂种具有与仅在Ser-19上磷酸化的野生型杂种相似的肌动蛋白激活的ATP酶。仅在Thr-18上磷酸化的肌球蛋白的肌动蛋白激活的ATP酶比在Ser-19上磷酸化的肌球蛋白低约15倍。Ser-19或Thr-18的磷酸化都允许形成细丝。值得注意的是,在滑行细丝分析中,仅在Thr-18上磷酸化的肌球蛋白移动肌动蛋白细丝的速度与在Ser-19上磷酸化或在Thr-18和Ser-19上都磷酸化的肌球蛋白相似。

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