Rizzo Jason M, Tarsio Maureen, Martínez-Muñoz Gloria A, Kane Patricia M
Department of Biochemistry and Molecular Biology, State University of New York Upstate Medical University, Syracuse, New York 13210, USA.
J Biol Chem. 2007 Mar 16;282(11):8521-32. doi: 10.1074/jbc.M607092200. Epub 2007 Jan 18.
The V-ATPase H subunit (encoded by the VMA13 gene) activates ATP-driven proton pumping in intact V-ATPase complexes and inhibits MgATPase activity in cytosolic V1 sectors (Parra, K. J., Keenan, K. L., and Kane, P. M. (2000) J. Biol. Chem. 275, 21761-21767). Yeast diploids heterozygous for a vma13Delta mutation show the pH- and calcium-dependent conditional lethality characteristic of mutants lacking V-ATPase activity, although they still contain one wild-type copy of VMA13. Vacuolar vesicles from this strain have approximately 50% of the ATPase activity of those from a wild-type diploid but do not support formation of a proton gradient. Compound heterozygotes with a second heterozygous deletion in another V1 subunit gene exhibit improved growth, vacuolar acidification, and ATP-driven proton transport in vacuolar vesicles. In contrast, compound heterozygotes with a second deletion in a Vo subunit grow even more poorly than the vma13Delta heterozygote, have very little vacuolar acidification, and have very low levels of V-ATPase subunits in isolated vacuoles. In addition, cytosolic V1 sectors from this strain and from the strain containing only the heterozygous vma13Delta mutation have elevated MgATPase activity. The results suggest that balancing levels of subunit H with those of other V-ATPase subunits is critical, both for allowing organelle acidification and for preventing unproductive hydrolysis of cytosolic ATP.
V-ATP酶H亚基(由VMA13基因编码)可激活完整V-ATP酶复合物中由ATP驱动的质子泵浦,并抑制胞质V1区的MgATP酶活性(帕拉,K.J.,基南,K.L.,以及凯恩,P.M.(2000年)《生物化学杂志》275卷,21761 - 21767页)。vma13Delta突变杂合的酵母二倍体表现出缺乏V-ATP酶活性的突变体所特有的pH和钙依赖性条件致死性,尽管它们仍含有一个VMA13的野生型拷贝。该菌株的液泡囊泡具有野生型二倍体液泡囊泡约50%的ATP酶活性,但不支持质子梯度的形成。在另一个V1亚基基因中带有第二个杂合缺失的复合杂合子在生长、液泡酸化以及液泡囊泡中ATP驱动的质子转运方面表现出改善。相比之下,在一个Vo亚基中带有第二个缺失的复合杂合子生长甚至比vma13Delta杂合子更差,几乎没有液泡酸化,并且在分离的液泡中V-ATP酶亚基水平非常低。此外,该菌株以及仅含有杂合vma13Delta突变的菌株的胞质V1区具有升高的MgATP酶活性。结果表明,使H亚基与其他V-ATP酶亚基的水平保持平衡对于细胞器酸化以及防止胞质ATP的无效水解都至关重要。