Hisanaga Yuko, Ago Hideo, Nakagawa Noriko, Hamada Keisuke, Ida Koh, Yamamoto Masaki, Hori Tetsuya, Arii Yasuhiro, Sugahara Mitsuaki, Kuramitsu Seiki, Yokoyama Shigeyuki, Miyano Masashi
Structural Biophysics Laboratory, RIKEN Harima Institute at SPring-8, Sayo, Hyogo, Japan.
J Biol Chem. 2004 Jul 23;279(30):31717-26. doi: 10.1074/jbc.M400100200. Epub 2004 May 15.
Long chain fatty acyl-CoA synthetases are responsible for fatty acid degradation as well as physiological regulation of cellular functions via the production of long chain fatty acyl-CoA esters. We report the first crystal structures of long chain fatty acyl-CoA synthetase homodimer (LC-FACS) from Thermus thermophilus HB8 (ttLC-FACS), including complexes with the ATP analogue adenosine 5'-(beta,gamma-imido) triphosphate (AMP-PNP) and myristoyl-AMP. ttLC-FACS is a member of the adenylate forming enzyme superfamily that catalyzes the ATP-dependent acylation of fatty acid in a two-step reaction. The first reaction step was shown to propagate in AMP-PNP complex crystals soaked with myristate solution. Myristoyl-AMP was identified as the intermediate. The AMP-PNP and the myristoyl-AMP complex structures show an identical closed conformation of the small C-terminal domains, whereas the uncomplexed form shows a variety of open conformations. Upon ATP binding, the fatty acid-binding tunnel gated by an aromatic residue opens to the ATP-binding site. The gated fatty acid-binding tunnel appears only to allow one-way movement of the fatty acid during overall catalysis. The protein incorporates a hydrophobic branch from the fatty acid-binding tunnel that is responsible for substrate specificity. Based on these high resolution crystal structures, we propose a unidirectional Bi Uni Uni Bi Ping-Pong mechanism for the two-step acylation by ttLC-FACS.
长链脂肪酰辅酶A合成酶负责脂肪酸降解以及通过生成长链脂肪酰辅酶A酯对细胞功能进行生理调节。我们报道了嗜热栖热菌HB8(ttLC-FACS)的长链脂肪酰辅酶A合成酶同型二聚体的首个晶体结构,包括与ATP类似物腺苷5'-(β,γ-亚氨基)三磷酸(AMP-PNP)和肉豆蔻酰-AMP的复合物。ttLC-FACS是腺苷酸形成酶超家族的成员,它通过两步反应催化ATP依赖的脂肪酸酰化。第一步反应在浸泡于肉豆蔻酸盐溶液的AMP-PNP复合晶体中进行。肉豆蔻酰-AMP被鉴定为中间体。AMP-PNP和肉豆蔻酰-AMP复合物结构显示小的C末端结构域具有相同的封闭构象,而未复合形式显示出多种开放构象。ATP结合后,由一个芳香族残基门控的脂肪酸结合通道向ATP结合位点开放。门控的脂肪酸结合通道在整个催化过程中似乎只允许脂肪酸单向移动。该蛋白质包含一条来自脂肪酸结合通道的疏水分支,负责底物特异性。基于这些高分辨率晶体结构,我们提出了ttLC-FACS两步酰化的单向双单双乒乓机制。