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Studies on localization and function of annexin A4a within urinary bladder epithelium using a mouse knockout model

机译:利用小鼠基因敲除模型研究膜联蛋白A4a在膀胱上皮细胞中的定位和功能

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摘要

Annexin A4 (anxA4) is a member of the Ca2+-dependent membrane-binding family of proteins implicated in the regulation of ion conductances, Ca2+ homeostasis, and membrane trafficking. We demonstrate, in mice, that annexins 1-6 are present in whole bladder and exhibit differential expression in the urothelium. An anxA4a-knockout (anxA4a-/-) mouse model shows no protein in the urothelium by immunofluorescence and immunoblotting. In wild-type bladders, anxA4a in umbrella cells showed uniform cytoplasmic staining and some association with the nuclear membrane. Application of a hydrostatic pressure to bladders mounted in Ussing chambers resulted in redistribution of anxA4a from cytoplasm to cellular boundaries in the basal and intermediate cells but not in superficial umbrella cells. We hypothesized that anxA4a might be important for barrier function or for stretch-activated membrane trafficking. To test these hypotheses, we conducted a series of functional and morphological analyses on bladders from control and anxA4a-/- animals. The transepithelial resistances, water permeabilities, and urea permeabilities of anxA4a-/- bladders were not different from controls, indicating that barrier function was intact. Membrane trafficking in response to hydrostatic pressure as measured by capacitance increases was also normal for anxA4a-/- bladders. Cystometrograms performed on live animals showed that voiding frequency and intrabladder pressures were also not different. There were no differences in bladder surface morphology or cellular architecture examined by scanning and transmission electron microscopy, respectively. We conclude that loss of anxA4 from the urothelium does not affect barrier function, membrane trafficking, or normal bladder-voiding behavior.
机译:Annexin A4(anxA4)是依赖于Ca 2 + 的膜结合家族的成员,参与离子电导,Ca 2 + 稳态和膜的调节。贩运我们证明,在小鼠中,膜联蛋白1-6存在于整个膀胱中,并在尿路上皮中表现出差异表达。 anxA4a敲除(anxA4a -/-)小鼠模型通过免疫荧光和免疫印迹法显示尿路上皮中没有蛋白质。在野生型膀胱中,伞状细胞中的anxA4a表现出均匀的细胞质染色并与核膜有一定的联系。对安装在Ussing室中的膀胱施加静水压力会导致anxA4a从细胞质重新分布到基础细胞和中间细胞中的细胞边界,而不是浅层伞状细胞中。我们假设anxA4a可能对屏障功能或拉伸激活膜运输很重要。为了检验这些假设,我们对对照和anxA4a -/-动物的膀胱进行了一系列功能和形态分析。 anxA4a -//-膀胱的跨上皮阻力,透水率和尿素渗透率与对照组无差异,表明屏障功能完好无损。通过电容增加测量的响应于静水压力的膜运输对于anxA4a -/-膀胱也是正常的。对活体动物进行的膀胱造影图显示,排尿频率和膀胱内压力也无差异。分别通过扫描和透射电子显微镜检查的膀胱表面形态或细胞结构没有差异。我们得出的结论是,尿路上皮中anxA4的丢失不会影响屏障功能,膜运输或正常的膀胱排泄行为。

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