Department of Biochemistry, Vanderbilt University, Nashville, Tennessee, United States.
Department of Ophthalmology and Visual Sciences, Vanderbilt University, Nashville, Tennessee, United States.
Invest Ophthalmol Vis Sci. 2022 Jul 8;63(8):5. doi: 10.1167/iovs.63.8.5.
To spatially map aquaporin-5 (AQP5) expression in the bovine lens, molecularly characterize cytoplasmic AQP5-containing vesicles in the outer cortex, and elucidate AQP5 membrane trafficking mechanisms.
Immunofluorescence was performed on bovine lens cryosections using AQP5, TOMM20, COX IV, calnexin, LC3B, Sec22β, LIMP-2, and connexin 50 antibodies and the membrane dye CM-DiI. AQP5 plasma membrane insertion was defined via line expression profile analysis. Transmission electron microscopy (TEM) was performed on bovine lens sections to examine cytoplasmic organelle morphology and subcellular localization in cortical fiber cells. Bovine lenses were treated with 10-nM bafilomycin A1 or 0.1% dimethyl sulfoxide vehicle control for 24 hours in ex vivo culture to determine changes in AQP5 plasma membrane expression.
Immunofluorescence analysis revealed cytoplasmic AQP5 expression in lens epithelial cells and differentiating fiber cells. In the lens cortex, complete AQP5 plasma membrane insertion occurs at r/a = 0.951 ± 0.005. AQP5-containing cytoplasmic vesicles are spheroidal in morphology with linear extensions, express TOMM20, and contain LC3B and LIMP-2, but not Sec22β, as fiber cells mature. TEM analysis revealed complex vesicular assemblies with congruent subcellular localization to AQP5-containing cytoplasmic vesicles. AQP5-containing cytoplasmic vesicles appear to dock with the plasma membrane. Bafilomycin A1 treatment reduced AQP5 plasma membrane expression by 27%.
AQP5 localizes to spheroidal, linear cytoplasmic vesicles in the differentiating bovine lens fiber cells. During fiber cell differentiation, these vesicles incorporate LC3B and presumably fuse with LIMP-2-positive lysosomes. Our data suggest that AQP5 to the plasma membrane through lysosome-associated unconventional protein secretion, a novel mechanism of AQP5 trafficking.
对牛晶状体中水通道蛋白 5(AQP5)的表达进行空间定位,对位于外皮层的含有细胞质 AQP5 的囊泡进行分子特征分析,并阐明 AQP5 膜运输机制。
使用 AQP5、TOMM20、COX IV、钙连蛋白、LC3B、Sec22β、LIMP-2 和连接蛋白 50 抗体和膜染料 CM-DiI 对牛晶状体冷冻切片进行免疫荧光染色。通过线表达谱分析定义 AQP5 质膜插入。对牛晶状体切片进行透射电子显微镜(TEM)检查,以检查皮质纤维细胞中细胞质细胞器的形态和亚细胞定位。将牛晶状体在离体培养中用 10-nM 巴弗洛霉素 A1 或 0.1%二甲基亚砜载体对照处理 24 小时,以确定 AQP5 质膜表达的变化。
免疫荧光分析显示晶状体上皮细胞和分化纤维细胞中存在细胞质 AQP5 表达。在外皮层,AQP5 完全插入质膜发生在 r/a=0.951±0.005。AQP5 含有细胞质的囊泡呈球形,具有线性延伸,表达 TOMM20,并含有 LC3B 和 LIMP-2,但在纤维细胞成熟时不含 Sec22β。TEM 分析显示复杂的囊泡组装具有与 AQP5 含有细胞质的囊泡一致的亚细胞定位。AQP5 含有细胞质的囊泡似乎与质膜对接。巴弗洛霉素 A1 处理使 AQP5 质膜表达减少了 27%。
AQP5 定位于分化牛晶状体纤维细胞中的球形、线性细胞质囊泡。在纤维细胞分化过程中,这些囊泡包含 LC3B,并推测与 LIMP-2 阳性溶酶体融合。我们的数据表明,AQP5 通过溶酶体相关的非经典蛋白分泌途径定位到质膜,这是一种新型的 AQP5 运输机制。