首页> 外文期刊>The Journal of Experimental Biology >Biochemical support for the V-ATPase rotary mechanism: antibody against HA-tagged Vma7p or Vma16p but not Vma10p inhibits activity
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Biochemical support for the V-ATPase rotary mechanism: antibody against HA-tagged Vma7p or Vma16p but not Vma10p inhibits activity

机译:V-ATPase旋转机制的生化支持:抗HA标签的Vma7p或Vma16p抗体,但不包含Vma10p抑制活性

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V-ATPase null mutants in yeast have a distinct, conditionally lethal phenotype that can be obtained through disruption of any one of its subunits. This enables supplementation of this mutant with the relevant subunit tagged with an epitope against which an antibody is available. In this system, the effect of antibody on the activity of the enzyme can be analyzed. Towards this end we used HA to tag subunits Vma7p, Vma10p and Vma16p, which are assumed to represent, respectively, the shaft, stator and turbine of the enzyme, and used them to supplement the corresponding yeast V-ATPase null mutants. The anti-HA epitope antibody inhibited both the ATP-dependent proton uptake and the ATPase activities of the Vma16p-HA and Vma7p-HA containing complexes, in intact vacuoles and in the detergent-solubilized enzyme. Neither of these activities was inhibited by the antibody in Vma10p-HA containing enzyme. These results support the function of Vma10p as part of the stator, while the other tagged subunits are part of the rotor apparatus. The HA-tag was attached to the N terminus of Vma16p; thus the antibody inhibition points to its accessibility outside the vacuolar membrane. This assumption is supported by the supplementation of the yeast mutant by the homologues of Vma16p isolated from Arabidopsis thaliana and lemon fruit c-DNA. Contrary to yeast, which has five predicted helices, the plant subunit Vma16p has only four. Our results confirm a recent report that only four of the yeast Vma16p complexes are actually transmembrane helices. [References: 55]
机译:酵母中的V-ATPase无效突变体具有独特的,有条件的致死表型,可以通过破坏其任何亚基来获得。这使得该突变体补充有标记有可用抗体的表位的相关亚基。在该系统中,可以分析抗体对酶活性的影响。为此,我们使用HA标记亚基Vma7p,Vma10p和Vma16p,假定它们分别代表酶的杆身,定子和涡轮,并使用它们来补充相应的酵母V-ATPase无效突变体。在完整的液泡中和在去污剂增溶的酶中,抗HA表位抗体均抑制ATP依赖的质子吸收和Vma16p-HA和Vma7p-HA含复合物的ATP酶活性。这些活性均不受含Vma10p-HA的酶中抗体的抑制。这些结果支持了Vma10p作为定子一部分的功能,而其他带标签的子单元则是转子设备的一部分。 HA标签附着在Vma16p的N末端;因此,抗体抑制作用指向其在液泡膜外的可及性。通过从拟南芥和柠檬果实c-DNA分离的Vma16p的同源物补充酵母突变体来支持该假设。与具有五个预测的螺旋的酵母相反,植物亚基Vma16p只有四个。我们的结果证实了最近的报道,即只有四个酵母Vma16p复合物实际上是跨膜螺旋。 [参考:55]

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