Mammalian epididymal epithelial cells are crucial for sperm maturation. Historically, vacuole-like ultrastructures in epididymal epithelial cells were observed via transmission electron microscopy but were undefined. Here, we utilize volume electron microscopy (vEM) to generate 3D reconstructions of epididymal epithelial cells and identify these vacuoles as intercellular organelle reservoirs (IORs) in the lateral intercellular space (LIS), which contains protein aggregates, autophagosomes, lysosome-related organelles and mitochondrial residues. Immunolabelling of organelle markers such as P62, LC3, LAMP1 and TOMM20 confirm these findings. The IOR size or number varies across four epididymal regions and decreases with age. Rab27a mutant mice exhibit reduced IORs in the caput epididymis and a subfertility phenotype, suggesting the involvement of Rab27a in the formation of IORs. Furthermore, we observe the presence of IORs between intestinal epithelial cells besides epididymis. Amino acid transporters at IOR edges suggest dynamic protein recycling. Our findings reveal that the IOR is an important structure critical for organelle turnover and recycling outside epithelial cells with limited self-degradation capabilities.
In situ architecture of the intercellular organelle reservoir between epididymal epithelial cells by volume electron microscopy.
利用体积电子显微镜观察附睾上皮细胞间细胞器库的原位结构
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作者:Li Xia, Qiao Feng, Guo Jiansheng, Jiang Ting, Lou Huifang, Li Huixia, Xie Gangcai, Wu Hangjun, Wang Weizhen, Pei Ruoyu, Liu Sha, Ye Mei, Li Jin, Huang Shiqin, Zhang Mengya, Ma Chaoye, Huang Yiwen, Xu Shushu, Li Xiaofeng, Sun Xiao, Yu Jun, Fok Kin Lam, Duan Shumin, Chen Hao
| 期刊: | Nature Communications | 影响因子: | 15.700 |
| 时间: | 2025 | 起止号: | 2025 Feb 15; 16(1):1664 |
| doi: | 10.1038/s41467-025-56807-9 | 研究方向: | 细胞生物学 |
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