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MURC/cavin-4的卷曲螺旋结构域参与心肌细胞中小窝蛋白-3的膜转运。

The coiled-coil domain of MURC/cavin-4 is involved in membrane trafficking of caveolin-3 in cardiomyocytes.

作者信息

Naito Daisuke, Ogata Takehiro, Hamaoka Tetsuro, Nakanishi Naohiko, Miyagawa Kotaro, Maruyama Naoki, Kasahara Takeru, Taniguchi Takuya, Nishi Masahiro, Matoba Satoaki, Ueyama Tomomi

机构信息

Department of Cardiovascular Medicine, Graduate School of Medical Science, Kyoto Prefectural University of Medicine, Kyoto, Japan.

Department of Cardiovascular Medicine, Graduate School of Medical Science, Kyoto Prefectural University of Medicine, Kyoto, Japan

出版信息

Am J Physiol Heart Circ Physiol. 2015 Dec 15;309(12):H2127-36. doi: 10.1152/ajpheart.00446.2015. Epub 2015 Oct 23.

Abstract

Muscle-restricted coiled-coil protein (MURC), also referred to as cavin-4, is a member of the cavin family that works cooperatively with caveolins in caveola formation and function. Cavins are cytoplasmic proteins with coiled-coil domains and form heteromeric complexes, which are recruited to caveolae in cells expressing caveolins. Among caveolins, caveolin-3 (Cav3) is exclusively expressed in muscle cells, similar to MURC/cavin-4. In the heart, Cav3 overexpression contributes to cardiac protection, and its deficiency leads to progressive cardiomyopathy. Mutations in the MURC/cavin-4 gene have been identified in patients with dilated cardiomyopathy. In the present study, we show the role of MURC/cavin-4 as a caveolar component in the heart. In H9c2 cells, MURC/cavin-4 was localized at the plasma membrane, whereas a MURC/cavin-4 mutant lacking the coiled-coil domain (ΔCC) was primarily localized to the cytoplasm. ΔCC bound to Cav3 and impaired membrane localization of Cav3 in cardiomyocytes. Additionally, although ΔCC did not alter Cav3 mRNA expression, ΔCC decreased the Cav3 protein level. MURC/cavin-4 and ΔCC similarly induced cardiomyocyte hypertrophy; however, ΔCC showed higher hypertrophy-related fetal gene expression than MURC/cavin-4. ΔCC induced ERK activation in cardiomyocytes. Transgenic mice expressing ΔCC in the heart (ΔCC-Tg mice) showed impaired cardiac function accompanied by cardiomyocyte hypertrophy and marked interstitial fibrosis. Hearts from ΔCC-Tg mice showed a reduction of the Cav3 protein level and activation of ERK. These results suggest that MURC/cavin-4 requires its coiled-coil domain to target the plasma membrane and to stabilize Cav3 at the plasma membrane of cardiomyocytes and that MURC/cavin-4 functions as a crucial caveolar component to regulate cardiac function.

摘要

肌肉限制性卷曲螺旋蛋白(MURC),也被称为小窝蛋白4(cavin-4),是小窝蛋白家族的成员之一,在小窝的形成和功能中与小窝蛋白协同发挥作用。小窝蛋白是具有卷曲螺旋结构域的细胞质蛋白,可形成异源复合物,并被招募到表达小窝蛋白的细胞的小窝中。在小窝蛋白中,小窝蛋白3(Cav3)仅在肌肉细胞中表达,与MURC/cavin-4类似。在心脏中,Cav3的过表达有助于心脏保护,而其缺乏则会导致进行性心肌病。在扩张型心肌病患者中已鉴定出MURC/cavin-4基因的突变。在本研究中,我们展示了MURC/cavin-4作为心脏中小窝成分的作用。在H9c2细胞中,MURC/cavin-4定位于质膜,而缺乏卷曲螺旋结构域的MURC/cavin-4突变体(ΔCC)主要定位于细胞质。ΔCC与Cav3结合并损害了Cav3在心肌细胞中的膜定位。此外,尽管ΔCC没有改变Cav3的mRNA表达,但ΔCC降低了Cav3蛋白水平。MURC/cavin-4和ΔCC同样诱导心肌细胞肥大;然而,ΔCC显示出比MURC/cavin-4更高的肥大相关胎儿基因表达。ΔCC诱导心肌细胞中的ERK激活。在心脏中表达ΔCC的转基因小鼠(ΔCC-Tg小鼠)表现出心脏功能受损,伴有心肌细胞肥大和明显的间质纤维化。来自ΔCC-Tg小鼠的心脏显示Cav3蛋白水平降低和ERK激活。这些结果表明,MURC/cavin-4需要其卷曲螺旋结构域来靶向质膜并在心肌细胞质膜上稳定Cav3,并且MURC/cavin-4作为关键的小窝成分发挥作用以调节心脏功能。

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