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变构抑制非肌肉肌球蛋白 2 对其细胞内扩散的影响。

Effect of allosteric inhibition of non-muscle myosin 2 on its intracellular diffusion.

机构信息

MTA-ELTE Motor Pharmacology Research Group, Department of Biochemistry, Eötvös Loránd University, Pázmány Péter sétány 1/c, 1117, Budapest, Hungary.

出版信息

Sci Rep. 2020 Aug 7;10(1):13341. doi: 10.1038/s41598-020-69853-8.

Abstract

Subcellular dynamics of non-muscle myosin 2 (NM2) is crucial for a broad-array of cellular functions. To unveil mechanisms of NM2 pharmacological control, we determined how the dynamics of NM2 diffusion is affected by NM2's allosteric inhibitors, i.e. blebbistatin derivatives, as compared to Y-27632 inhibiting ROCK, NM2's upstream regulator. We found that NM2 diffusion is markedly faster in central fibers than in peripheral stress fibers. Y-27632 accelerated NM2 diffusion in both peripheral and central fibers, whereas in peripheral fibers blebbistatin derivatives slightly accelerated NM2 diffusion at low, but markedly slowed it at high inhibitor concentrations. In contrast, rapid NM2 diffusion in central fibers was unaffected by direct NM2 inhibition. Using our optopharmacological tool, Molecular Tattoo, sub-effective concentrations of a photo-crosslinkable blebbistatin derivative were increased to effective levels in a small, irradiated area of peripheral fibers. These findings suggest that direct allosteric inhibition affects the diffusion profile of NM2 in a markedly different manner compared to the disruption of the upstream control of NM2. The pharmacological action of myosin inhibitors is channeled through autonomous molecular processes and might be affected by the load acting on the NM2 proteins.

摘要

细胞非肌肉肌球蛋白 2(NM2)的亚细胞动力学对广泛的细胞功能至关重要。为了揭示 NM2 药理学控制的机制,我们确定了 NM2 的变构抑制剂(即 blebbistatin 衍生物)如何影响 NM2 扩散的动力学,与 NM2 的上游调节剂 ROCK 的抑制作用相比。我们发现 NM2 在中心纤维中的扩散明显快于在周围的应力纤维中。Y-27632 加速了 NM2 在周围和中心纤维中的扩散,而 blebbistatin 衍生物在低浓度时略微加速了 NM2 在周围纤维中的扩散,但在高抑制剂浓度下则明显减缓了 NM2 的扩散。相比之下,直接 NM2 抑制对中心纤维中的快速 NM2 扩散没有影响。使用我们的光药理学工具,分子纹身,将一种光交联 blebbistatin 衍生物的亚有效浓度增加到周围纤维的一个小照射区域的有效水平。这些发现表明,与 NM2 的上游控制的破坏相比,直接变构抑制以明显不同的方式影响 NM2 的扩散模式。肌球蛋白抑制剂的药理作用是通过自主的分子过程进行的,可能受到作用在 NM2 蛋白上的负载的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/605a/7415145/37832310a85f/41598_2020_69853_Fig1_HTML.jpg

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