Meier Thomas, Matthey Ulrich, von Ballmoos Christoph, Vonck Janet, Krug von Nidda Tassilo, Kühlbrandt Werner, Dimroth Peter
ETH-Zentrum, Institut für Mikrobiologie, Eidgenössische Technische Hochschule, Schmelzbergstr. 7, CH-8092 Zürich, Switzerland.
J Mol Biol. 2003 Jan 10;325(2):389-97. doi: 10.1016/s0022-2836(02)01204-4.
The Na(+)-translocating ATP synthases from Ilyobacter tartaricus and Propionigenium modestum contain undecameric c subunit rings of unusual stability. These c(11) rings have been isolated from both ATP synthases and crystallized in two dimensions. Cryo-transmission electron microscopy projection maps of the c-rings from both organisms were identical at 7A resolution. Different crystal contacts were induced after treatment of the crystals with dicyclohexylcarbodiimide (DCCD), which is consistent with the binding of the inhibitor to glutamate 65 in the C-terminal helix on the outside of the ring. The c subunits of the isolated c(11) ring of I.tartaricus were modified specifically by incubation with DCCD with kinetics that were indistinguishable from those of the F(1)F(o) holoenzyme. The reaction rate increased with decreasing pH but was lower in the presence of Na(+). From the pH profile of the second-order rate constants, the pK of glutamate 65 was deduced to be 6.6 or 6.2 in the absence or presence of 0.5mM NaCl, respectively. These pK values are identical with those determined for the F(1)F(o) complex. The results indicate that the isolated c-ring retains its native structure, and that the glutamate 65, including binding sites near the middle of the membrane, are accessible to Na(+) from the cytoplasm through access channels within the c-ring itself.
来自酒石酸伊氏菌和温和丙酸杆菌的Na(+)-转运ATP合酶含有稳定性异常的十一聚体c亚基环。这些c(11)环已从两种ATP合酶中分离出来并进行二维结晶。两种生物体的c环的低温透射电子显微镜投影图在7埃分辨率下是相同的。用二环己基碳二亚胺(DCCD)处理晶体后诱导出不同的晶体接触,这与抑制剂与环外侧C末端螺旋上的谷氨酸65结合一致。通过与DCCD孵育,酒石酸伊氏菌分离的c(11)环的c亚基被特异性修饰,其动力学与F(1)F(o)全酶的动力学无法区分。反应速率随pH降低而增加,但在有Na(+)存在时较低。从二级速率常数的pH曲线推断,在不存在或存在0.5mM NaCl的情况下,谷氨酸65的pK分别为6.6或6.2。这些pK值与为F(1)F(o)复合物测定的值相同。结果表明,分离的c环保留了其天然结构,并且谷氨酸65,包括膜中部附近的结合位点,可通过c环自身内的通道从细胞质中被Na(+)接触到。