首页> 美国卫生研究院文献>The Journal of General Physiology >Annexin A4 Reduces Water and Proton Permeability of Model Membranes but Does Not Alter Aquaporin 2–mediated Water Transport in Isolated Endosomes
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Annexin A4 Reduces Water and Proton Permeability of Model Membranes but Does Not Alter Aquaporin 2–mediated Water Transport in Isolated Endosomes

机译:Annexin A4降低模型膜的水和质子渗透性但不会改变水通道蛋白2介导的分离内体中水的运输。

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摘要

Annexin A4 (Anx4) belongs to a ubiquitous family of Ca2+-dependent membrane-binding proteins thought to be involved in membrane trafficking and membrane organization within cells. Anx4 localizes to the apical region in epithelia; however, its physiological role is unclear. We show that Anx4 exhibited binding to liposomes (phosphatidylcholine:phosphatidylserine, 1:1) in the presence of Ca2+ and binding was reversible with EDTA. Anx4 binding resulted in liposome aggregation and a reduction in membrane water permeability of 29% (P < 0.001) at 25°C. These effects were not seen in the presence of Ca2+ or Anx4 alone and were reversible with EDTA. Measurements of membrane fluidity made by monitoring fluorescence anisotropy of 2-(12-(7-nitrobenz-2-oxa-1,3-diazol-4-yl)amino)dodecanoyl-1-hexadecanoyl-sn-glycero-3-phosphocholine (NBD-HPC) demonstrated that Anx4 binding rigidified the outer leaflet of the bilayer (P < 0.001), thus providing a molecular explanation for the inhibition of water flux. To determine whether Anx4 would produce similar effects on physiological membranes we constructed liposomes which recapitulated the lipid composition of the inner leaflet of the MDCK apical membrane. These membranes exhibited reductions to water permeability upon Anx4 binding (19.5% at 25°C, 31% at 37°C; P < 0.01 and P < 0.001, respectively) and to proton permeability (15% at 25°C, 19.5% at 37°C; P < 0.05). Since our in vitro experiments indicated an effect on membrane permeability, we examined localization of Anx4 in the kidney collecting duct, a region of the nephron responsible for concentrating urine through water reabsorbtion. Anx4 was shown to colocalize apically with aquaporin 2 (AQP2) in collecting duct epithelia. To test for the existence of a functional interaction between Anx4 and AQP2 we isolated AQP2-containing endosomes and exposed them to Anx4/Ca2+. Water flux rates were unchanged, indicating Anx4 does not directly regulate AQP2. We conclude that Anx4 can alter the physical properties of membranes by associating with them and regulate passive membrane permeability to water and protons. These properties represent important new functions for Anx4.
机译:Annexin A4(Anx4)属于一个普遍存在的Ca 2 + 依赖性膜结合蛋白家族,被认为与细胞内的膜运输和膜组织有关。 Anx4定位于上皮的顶端区域。但是,其生理作用尚不清楚。我们发现,在Ca 2 + 存在下,Anx4表现出与脂质体的结合(磷脂酰胆碱:磷脂酰丝氨酸,1:1),并且与EDTA的结合是可逆的。 Anx4结合导致脂质体聚集,并在25°C下使膜水渗透率降低29%(P <0.001)。单独存在Ca 2 + 或Anx4时看不到这些作用,而EDTA可以逆转。通过监测2-(12-(7-硝基苯-2-氧杂-1,3-二氮杂-4-基)氨基)十二烷酰基-1-十六烷酰基-sn-甘油-3-磷酸胆碱的荧光各向异性来测量膜的流动性( NBD-HPC)证明Anx4结合使双层的外部小叶硬化(P <0.001),从而为抑制水通量提供了分子解释。为了确定Anx4是否会对生理膜产生类似的作用,我们构建了脂质体,该脂质体概括了MDCK顶膜内部小叶的脂质组成。这些膜在Anx4结合后表现出降低的水渗透性(在25°C下为19.5%,在37°C下为31%;分别为P <0.01和P <0.001)和质子渗透性的降低(在25°C下为15%,在25°C下为19.5%) 37℃; P <0.05)。因为我们的体外实验表明对膜通透性有影响,所以我们检查了Anx4在肾脏收集管中的定位,肾脏收集管是负责通过水吸收来浓缩尿液的肾单位区域。 Anx4被证明与水通道蛋白2(AQP2)在收集导管上皮中顶端共定位。为了测试Anx4和AQP2之间是否存在功能相互作用,我们分离了含AQP2的内体并将其暴露于Anx4 / Ca 2 + 。水通量速率没有变化,表明Anx4不直接调节AQP2。我们得出的结论是,Anx4可以通过与膜相关联来改变膜的物理性质,并调节膜对水和质子的被动渗透性。这些属性代表了Anx4的重要新功能。

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