Lubkowski J, Wlodawer A, Ammon H L, Copeland T D, Swain A L
Macromolecular Structure Laboratory, NCI-Frederick Cancer Research and Development Center, Maryland 21702-1201.
Biochemistry. 1994 Aug 30;33(34):10257-65. doi: 10.1021/bi00200a005.
The amino acid sequence and a 2-A-resolution crystallographic structure of Pseudomonas 7A glutaminase-asparaginase (PGA) have been determined. PGA, which belongs to the family of tetrameric bacterial amidohydrolases, deamidates glutamine and asparagine. The amino acid sequence of PGA has a high degree of similarity to the sequences of other members of the family. PGA has the same fold as other bacterial amidohydrolases, with the exception of the position of a 20-residue loop that forms part of the active site. In the PGA structure presented here, the active site loop is observed clearly in only one monomer, in an open position, with a conformation different from that observed for other amidohydrolases. In the other three monomers the loop is disordered and cannot be traced. This phenomenon is probably a direct consequence of a very low occupancy of product(s) of the enzymatic reaction bound in the active sites of PGA in these crystals. The active sites are composed of a rigid part and the flexible loop. The rigid part consists of the residues directly involved in the catalytic reaction as well as residues that assist in orienting the substrate. Two residues that are important for activity residue on the flexible loop. We suggest that the flexible loops actively participate in the transport of substrate and product molecules through the amidohydrolase active sites and participate in orienting the substrate molecules properly in relation to the catalytic residues.
已确定了铜绿假单胞菌7A谷氨酰胺酶 - 天冬酰胺酶(PGA)的氨基酸序列和分辨率为2埃的晶体结构。PGA属于四聚体细菌酰胺水解酶家族,可使谷氨酰胺和天冬酰胺脱酰胺。PGA的氨基酸序列与该家族其他成员的序列具有高度相似性。PGA与其他细菌酰胺水解酶具有相同的折叠结构,但形成活性位点一部分的一个20个残基环的位置除外。在本文给出的PGA结构中,活性位点环仅在一个单体中清晰可见,处于开放位置,其构象与其他酰胺水解酶中观察到的不同。在其他三个单体中,该环无序且无法追踪。这种现象可能是由于这些晶体中PGA活性位点结合的酶促反应产物占有率非常低的直接结果。活性位点由一个刚性部分和柔性环组成。刚性部分由直接参与催化反应的残基以及协助底物定向的残基组成。柔性环上有两个对活性很重要的残基。我们认为柔性环积极参与底物和产物分子通过酰胺水解酶活性位点的转运,并参与使底物分子相对于催化残基正确定向。