Halavaty Andrei S, Kim Youngchang, Minasov George, Shuvalova Ludmilla, Dubrovska Ievgeniia, Winsor James, Zhou Min, Onopriyenko Olena, Skarina Tatiana, Papazisi Leka, Kwon Keehwan, Peterson Scott N, Joachimiak Andrzej, Savchenko Alexei, Anderson Wayne F
Center for Structural Genomics of Infectious Diseases, USA.
Acta Crystallogr D Biol Crystallogr. 2012 Oct;68(Pt 10):1359-70. doi: 10.1107/S0907444912029101. Epub 2012 Sep 13.
Some bacterial type II fatty-acid synthesis (FAS II) enzymes have been shown to be important candidates for drug discovery. The scientific and medical quest for new FAS II protein targets continues to stimulate research in this field. One of the possible additional candidates is the acyl-carrier-protein synthase (AcpS) enzyme. Its holo form post-translationally modifies the apo form of an acyl carrier protein (ACP), which assures the constant delivery of thioester intermediates to the discrete enzymes of FAS II. At the Center for Structural Genomics of Infectious Diseases (CSGID), AcpSs from Staphylococcus aureus (AcpS(SA)), Vibrio cholerae (AcpS(VC)) and Bacillus anthracis (AcpS(BA)) have been structurally characterized in their apo, holo and product-bound forms, respectively. The structure of AcpS(BA) is emphasized because of the two 3',5'-adenosine diphosphate (3',5'-ADP) product molecules that are found in each of the three coenzyme A (CoA) binding sites of the trimeric protein. One 3',5'-ADP is bound as the 3',5'-ADP part of CoA in the known structures of the CoA-AcpS and 3',5'-ADP-AcpS binary complexes. The position of the second 3',5'-ADP has never been described before. It is in close proximity to the first 3',5'-ADP and the ACP-binding site. The coordination of two ADPs in AcpS(BA) may possibly be exploited for the design of AcpS inhibitors that can block binding of both CoA and ACP.
一些细菌II型脂肪酸合成(FAS II)酶已被证明是药物发现的重要候选对象。对新型FAS II蛋白靶点的科学和医学探索持续推动着该领域的研究。酰基载体蛋白合成酶(AcpS)酶是另一个可能的候选对象。其全酶形式在翻译后修饰酰基载体蛋白(ACP)的脱辅基形式,从而确保硫酯中间体持续输送至FAS II的各个酶。在传染病结构基因组学中心(CSGID),分别对来自金黄色葡萄球菌(AcpS(SA))、霍乱弧菌(AcpS(VC))和炭疽芽孢杆菌(AcpS(BA))的AcpSs进行了脱辅基、全酶和产物结合形式的结构表征。由于在三聚体蛋白的三个辅酶A(CoA)结合位点中每个位点都发现了两个3',5'-二磷酸腺苷(3',5'-ADP)产物分子,因此重点研究了AcpS(BA)的结构。在CoA-AcpS和3',5'-ADP-AcpS二元复合物的已知结构中,一个3',5'-ADP作为CoA的3',5'-ADP部分结合。第二个3',5'-ADP的位置此前从未被描述过。它与第一个3',5'-ADP和ACP结合位点非常接近。AcpS(BA)中两个ADP的配位可能被用于设计能够阻断CoA和ACP结合的AcpS抑制剂。