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1
Genetic approaches to identify pathological limitations in aortic smooth muscle contraction.采用遗传学方法鉴定主动脉平滑肌收缩病理性受限的机制。
PLoS One. 2018 Mar 1;13(3):e0193769. doi: 10.1371/journal.pone.0193769. eCollection 2018.
2
Physiological vs. pharmacological signalling to myosin phosphorylation in airway smooth muscle.气道平滑肌肌球蛋白磷酸化的生理与药理学信号转导。
J Physiol. 2017 Oct 1;595(19):6231-6247. doi: 10.1113/JP274715. Epub 2017 Aug 24.
3
Genomics and evolution of protein phosphatases.蛋白磷酸酶的基因组学与进化
Sci Signal. 2017 Apr 11;10(474):eaag1796. doi: 10.1126/scisignal.aag1796.
4
Biogenesis and activity regulation of protein phosphatase 1.蛋白磷酸酶1的生物发生与活性调节
Biochem Soc Trans. 2017 Feb 8;45(1):89-99. doi: 10.1042/BST20160154.
5
Altered Smooth Muscle Cell Force Generation as a Driver of Thoracic Aortic Aneurysms and Dissections.平滑肌细胞力产生改变作为胸主动脉瘤和夹层的驱动因素
Arterioscler Thromb Vasc Biol. 2017 Jan;37(1):26-34. doi: 10.1161/ATVBAHA.116.303229. Epub 2016 Nov 22.
6
Role of myosin light chain phosphatase in cardiac physiology and pathophysiology.肌球蛋白轻链磷酸酶在心脏生理和病理生理中的作用。
J Mol Cell Cardiol. 2016 Dec;101:35-43. doi: 10.1016/j.yjmcc.2016.10.004. Epub 2016 Oct 11.
7
Cardiac myosin light chain is phosphorylated by Ca2+/calmodulin-dependent and -independent kinase activities.心肌肌球蛋白轻链通过钙/钙调蛋白依赖性和非依赖性激酶活性被磷酸化。
Proc Natl Acad Sci U S A. 2016 Jul 5;113(27):E3824-33. doi: 10.1073/pnas.1600633113. Epub 2016 Jun 20.
8
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9
Cardiac-specific deletion of protein phosphatase 1β promotes increased myofilament protein phosphorylation and contractile alterations.心脏特异性缺失蛋白磷酸酶1β会促进肌丝蛋白磷酸化增加和收缩改变。
J Mol Cell Cardiol. 2015 Oct;87:204-13. doi: 10.1016/j.yjmcc.2015.08.018. Epub 2015 Aug 31.
10
Constitutive phosphorylation of cardiac myosin regulatory light chain in vivo.体内心肌肌球蛋白调节轻链的组成性磷酸化
J Biol Chem. 2015 Apr 24;290(17):10703-16. doi: 10.1074/jbc.M115.642165. Epub 2015 Mar 2.

平滑肌细胞中占主导地位的蛋白磷酸酶 PP1c 同工型 PP1cβ 对于平滑肌收缩是必不可少的。

The dominant protein phosphatase PP1c isoform in smooth muscle cells, PP1cβ, is essential for smooth muscle contraction.

机构信息

From the Departments of Physiology and

Internal Medicine, University of Texas Southwestern Medical Center, Dallas, Texas 75390-9040 and.

出版信息

J Biol Chem. 2018 Oct 26;293(43):16677-16686. doi: 10.1074/jbc.RA118.003083. Epub 2018 Sep 5.

DOI:10.1074/jbc.RA118.003083
PMID:30185619
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC6204911/
Abstract

Contractile force development of smooth muscle is controlled by balanced kinase and phosphatase activities toward the myosin regulatory light chain (RLC). Numerous biochemical and pharmacological studies have investigated the specificity and regulatory activity of smooth muscle myosin light-chain phosphatase (MLCP) bound to myosin filaments and comprised of the regulatory myosin phosphatase target subunit 1 (MYPT1) and catalytic protein phosphatase 1cβ (PP1cβ) subunits. Recent physiological and biochemical evidence obtained with smooth muscle tissues from a conditional MYPT1 knockout suggests that a soluble, MYPT1-unbound form of PP1cβ may additionally contribute to myosin RLC dephosphorylation and relaxation of smooth muscle. Using a combination of isoelectric focusing and isoform-specific immunoblotting, we found here that more than 90% of the total PP1c in mouse smooth muscles is the β isoform. Moreover, conditional knockout of PP1cα or PP1cγ in adult smooth muscles did not result in an apparent phenotype in mice up to 6 months of age and did not affect smooth muscle contractions In contrast, smooth muscle-specific conditional PP1cβ knockout decreased contractile force development in bladder, ileal, and aortic tissues and reduced mouse survival. Bladder smooth muscle tissue from WT mice was selectively permeabilized to remove soluble PP1cβ to measure contributions of total (α-toxin treatment) and myosin-bound (Triton X-100 treatment) phosphatase activities toward phosphorylated RLC in myofilaments. Triton X-100 reduced PP1cβ content by 60% and the rate of RLC dephosphorylation by 2-fold. These results are consistent with the selective dephosphorylation of RLC by both MYPT1-bound and -unbound PP1cβ forms in smooth muscle.

摘要

平滑肌的收缩力发展受肌球蛋白调节轻链(RLC)的激酶和磷酸酶活性的平衡控制。大量生化和药理学研究调查了与肌球蛋白丝结合并由调节肌球蛋白磷酸酶靶蛋白 1(MYPT1)和催化蛋白磷酸酶 1cβ(PP1cβ)亚基组成的平滑肌肌球蛋白轻链磷酸酶(MLCP)的特异性和调节活性。最近使用条件性 MYPT1 敲除的平滑肌组织获得的生理和生化证据表明,一种可溶性、与 MYPT1 结合的 PP1cβ 形式可能另外有助于肌球蛋白 RLC 去磷酸化和平滑肌松弛。使用等电聚焦和同工型特异性免疫印迹的组合,我们在这里发现,超过 90%的小鼠平滑肌中的总 PP1c 是β同工型。此外,在成年平滑肌中条件性敲除 PP1cα或 PP1cγ在 6 个月大的小鼠中没有明显的表型,也不影响平滑肌收缩。相比之下,平滑肌特异性条件性 PP1cβ 敲除降低了膀胱、回肠和主动脉组织的收缩力发展,并降低了小鼠的存活率。从 WT 小鼠中选择性地透化膀胱平滑肌组织以去除可溶性 PP1cβ,以测量总(α-毒素处理)和肌球蛋白结合(Triton X-100 处理)磷酸酶活性对肌丝中磷酸化 RLC 的贡献。Triton X-100 降低了 60%的 PP1cβ 含量并使 RLC 去磷酸化速率增加了 2 倍。这些结果与 MYPT1 结合和未结合的 PP1cβ 形式在平滑肌中对 RLC 的选择性去磷酸化一致。