首页> 美国卫生研究院文献>The Journal of Biological Chemistry >Tra2β Protein Is Required for Tissue-specific Splicing of a Smooth Muscle Myosin Phosphatase Targeting Subunit Alternative Exon
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Tra2β Protein Is Required for Tissue-specific Splicing of a Smooth Muscle Myosin Phosphatase Targeting Subunit Alternative Exon

机译:Tra2β蛋白是平滑肌肌球蛋白磷酸酶靶向亚基替代外显子的组织特异性剪接所必需的

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摘要

Alternative splicing of the smooth muscle myosin phosphatase targeting subunit (Mypt1) exon 23 (E23) is tissue-specific and developmentally regulated and, thus, an attractive model for the study of smooth muscle phenotypic specification. We have proposed that Tra2β functions as a tissue-specific activator of Mypt1 E23 splicing on the basis of concordant expression patterns and Tra2β activation of Mypt1 E23 mini-gene splicing in vitro. In this study we examined the relationship between Tra2β and Mypt1 E23 splicing in vivo in the mouse. Tra2β was 2- to 5-fold more abundant in phasic smooth muscle tissues, such as the portal vein, small intestine, and small mesenteric artery, in which Mypt1 E23 is predominately included as compared with the tonic smooth muscle tissues, such as the aorta and inferior vena cava, in which Mypt1 E23 is predominately skipped. Tra2β was up-regulated in the small intestine postnatally, concordant with a switch to Mypt1 E23 splicing. Targeting of Tra2β in smooth muscle cells using SM22α-Cre caused a substantial reduction in Mypt1 E23 inclusion specifically in the intestinal smooth muscle of heterozygotes, indicating sensitivity to Tra2β gene dosage. The switch to the Mypt1 E23 skipped isoform coding for the C-terminal leucine zipper motif caused increased sensitivity of the muscle to the relaxant effects of 8-Br-cyclic guanosine monophosphate (cGMP). We conclude that Tra2β is necessary for the tissue-specific splicing of Mypt1 E23 in the phasic intestinal smooth muscle. Tra2β, by regulating the splicing of Mypt1 E23, sets the sensitivity of smooth muscle to cGMP-mediated relaxation.
机译:平滑肌肌球蛋白磷酸酶靶向亚基(Mypt1)外显子23(E23)的选择性剪接是组织特异性的,并且受发育调控,因此,是研究平滑肌表型规范的有吸引力的模型。我们已经提出,在体外一致表达模式和Mypt1 E23小基因剪接的Tra2β激活的基础上,Tra2β作为Mypt1 E23剪接的组织特异性激活剂。在这项研究中,我们研究了小鼠体内Tra2β与Mypt1 E23剪接之间的关系。 Tra2β在诸如门静脉,小肠和肠系膜小动脉等相位性平滑肌组织中含量丰富2至5倍,其中与主动脉等强直性平滑肌组织相比,其中主要包含Mypt1 E23下腔静脉,其中主要跳过了Mypt1 E23。出生后小肠中的Tra2β上调,与转用Mypt1 E23剪接相一致。使用SM22α-Cre靶向平滑肌细胞中的Tra2β会导致Mypt1 E23内含物的大量减少,特别是杂合子的肠道平滑肌中的表达,表明对Tra2β基因剂量的敏感性。改用Mypt1 E23跳过了C端亮氨酸拉链基序的同工型编码,导致肌肉对8-Br-环鸟苷一磷酸(cGMP)的松弛作用增加了敏感性。我们得出结论,Tra2β对于在阶段性肠平滑肌中Mypt1 E23的组织特异性剪接是必需的。 Tra2β通过调节Mypt1 E23的剪接,设置了平滑肌对cGMP介导的松弛的敏感性。

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