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大鼠心肌细胞横小管的早期形态发生:pBIN1的作用

Early Stage Morphogenesis of Transverse Tubules in Rat Cardiomyocytes: The Role of pBIN1.

作者信息

Guo Qian-Jin, Liang Jing-Hui, Li Hong-Tao, Li Lin-Lin, Guo Yingna, Wang Li-Peng, Ma Xin-Lei, Xie Xian-Jin, Hou Tingting, Wang Shi-Qiang

机构信息

State Key Laboratory of Membrane Biology, National Biomedical Imaging Center, and College of Life Sciences, Peking University, Beijing, China (Q.-J.G., J.-H.L., H.-T.L., L.-L.L., Y.G., L.-P.W., X.-L.M., T.H., S.-Q.W.).

Department of Medicine, Division of Endocrinology, Stanford University, CA (Q.-J.G.).

出版信息

Circ Res. 2025 Jul 18;137(3):435-448. doi: 10.1161/CIRCRESAHA.124.325472. Epub 2025 Jun 13.

Abstract

BACKGROUND

Transverse tubules (TTs) are tubular invaginations of myocyte membrane forming junctions with sarcoplasmic reticulum and are essential for excitation-contraction coupling. Although it is known that TTs begin to develop 2 weeks after birth in rodent cardiomyocytes, the spatial profile and molecular mechanisms of TT morphogenesis are not clear. Understanding the molecular mechanism of TT morphogenesis may provide potential solutions for TT loss in pathogenic conditions such as hypertrophy and heart failure.

METHODS

To understand early stage morphogenesis of cardiac TTs, we utilized a scanning electron microscope equipped with a focused ion beam to reconstruct a 3-dimensional spatial profile of developing TT network in cardiomyocytes from 2-week-old rats. We created tamoxifen-inducible cardiac-specific knockout rats to explore the role of exons 11 and 13 of the (bridging integrator 1) gene.

RESULTS

We found that TTs began to develop as intracellular membrane hubs around Z-discs, from which pseudopod-like tubules budded in a relatively random way toward different directions without necessarily connecting to the cell surface. A tubule network forms when membrane branches from adjacent hubs are interconnected. Cardiac-specific knockout of exon 13 (13KO) suppressed TT microfolds. In contrast, cardiac-specific knockout of exon 11 (11KO), which encodes the PIBM (phosphoinositide-binding motif), suppressed the formation of budding tubules, resulting in a sparse tubule network with swollen membrane hubs. Due to the underdeveloped TT network, TT-sarcoplasmic reticulum couplon density/size and excitation-contraction coupling gain in 11KO cardiomyocytes were decreased, similar to those occurring in failing heart cells.

CONCLUSIONS

TTs start to develop as budding tubules branching from membrane hubs around Z-discs. This process depends at least partially on the tubulation function of pBIN1 (BIN1 isoforms with PIBM [Bin1+11 and Bin1+11+17]), which is constitutively expressed in rat and human cardiomyocytes. Defective TT morphogenesis due to altered splicing in cardiomyocytes may have potential implications in heart diseases.

摘要

背景

横小管(TTs)是心肌细胞膜的管状内陷结构,与肌浆网形成连接,对兴奋 - 收缩偶联至关重要。虽然已知在啮齿类动物心肌细胞中,TTs在出生后2周开始发育,但其形态发生的空间轮廓和分子机制尚不清楚。了解TTs形态发生的分子机制可能为诸如肥大和心力衰竭等致病条件下TTs的丧失提供潜在的解决方案。

方法

为了解心脏TTs的早期形态发生,我们利用配备聚焦离子束的扫描电子显微镜重建了2周龄大鼠心肌细胞中正在发育的TT网络的三维空间轮廓。我们创建了他莫昔芬诱导的心脏特异性敲除大鼠,以探究桥连整合素1(BIN1)基因外显子11和13的作用。

结果

我们发现TTs开始作为Z盘周围的细胞内膜中心发育,伪足样小管从这些中心以相对随机的方式向不同方向出芽,不一定连接到细胞表面。当相邻中心的膜分支相互连接时,形成小管网络。心脏特异性敲除BIN1外显子13(13KO)抑制了TT微褶皱。相反,心脏特异性敲除编码磷酸肌醇结合基序(PIBM)的BIN1外显子11(11KO),抑制了出芽小管的形成,导致小管网络稀疏且膜中心肿胀。由于TT网络发育不全,11KO心肌细胞中的TT - 肌浆网偶联体密度/大小和兴奋 - 收缩偶联增益降低,类似于衰竭心脏细胞中的情况。

结论

TTs开始作为从Z盘周围的膜中心分支出来的出芽小管发育。这个过程至少部分依赖于pBIN1(具有PIBM的BIN1异构体[Bin1 + 11和Bin1 + 11 + 17])的成管功能,其在大鼠和人类心肌细胞中组成性表达。心肌细胞中由于BIN1剪接改变导致的TT形态发生缺陷可能对心脏病有潜在影响。

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