Three-dimensional structure of the binuclear metal center of phosphotriesterase.

نویسندگان

  • M M Benning
  • J M Kuo
  • F M Raushel
  • H M Holden
چکیده

Phosphotriesterase, as isolated from Pseudomonas diminuta, is capable of detoxifying widely used pesticides such as paraoxon and parathion and various mammalian acetylcholinesterase inhibitors. The enzyme requires a binuclear metal center for activity. Recently, the three-dimensional structure of the apoenzyme was solved (Benning et al., 1994) and shown to consist of an alpha/beta-barrel. Here we describe the three-dimensional structure of the holoenzyme, reconstituted with cadmium, as determined by X-ray crystallographic analysis to 2.0-A resolution. Crystals employed in the investigation belonged to the space group C2 with unit cell dimensions of a = 129.5 A, b = 91.4 A, c = 69.4 A, beta = 91.9 degrees, and two subunits in the asymmetric unit. There are significant differences in the three-dimensional architecture of the apo and holo forms of the enzyme such that their alpha-carbon positions superimpose with a root-mean-square deviation of 3.4 A. The binuclear metal center is located at the C-terminus of the beta-barrel with the cadmiums separated by 3.8 A. There are two bridging ligands to the metals: a water molecule (or possibly a hydroxide ion) and a carbamylated lysine residue (Lys 169). The more buried cadmium is surrounded by His 55, His 57, Lys 169, Asp 301, and the bridging water in a trigonal bipyramidal arrangement. The second metal is coordinated in a distorted octahedral geometry by His 201, His 230, Lys 169, the bridging water molecule, and two additional solvents.

برای دانلود رایگان متن کامل این مقاله و بیش از 32 میلیون مقاله دیگر ابتدا ثبت نام کنید

ثبت نام

اگر عضو سایت هستید لطفا وارد حساب کاربری خود شوید

منابع مشابه

Is Required for the Assembly of the Binuclear Metal Center of Phosphotriesterase

Phosphotriesterase from Pseudomonas diminuta is a zinc metalloenzyme that catalyzes the hydrolysis of a broad spectrum of organophosphate triesters, including the pesticides paraoxon and parathion.' Although the natural biological substrate for the phosphotriesterase has not yet been identified, the enzyme has received considerable attention because it is also capable of hydrolyzing chemical wa...

متن کامل

Activation of the binuclear metal center through formation of phosphotriesterase-inhibitor complexes.

Phosphotriesterase (PTE) from Pseudomonas diminuta is a binuclear metalloenzyme that catalyzes the hydrolysis of organophosphate nerve agents at rates approaching the diffusion-controlled limit. The proposed catalytic mechanism postulates the interaction of the substrate with the metal center and subsequent nucleophilic attack by the bridging hydroxide. X-band EPR spectroscopy was utilized to m...

متن کامل

Three-dimensional structure of the zinc-containing phosphotriesterase with the bound substrate analog diethyl 4-methylbenzylphosphonate.

Phosphotriesterase from Pseudomonas diminuta catalyzes the hydrolysis of paraoxon and related acetylcholinesterase inhibitors with rate enhancements that approach 10(12). The enzyme requires a binuclear metal center for activity and as isolated contains 2 equiv of zinc per subunit. Here we describe the three-dimensional structure of the Zn2+/Zn2+-substituted enzyme complexed with the substrate ...

متن کامل

Phosphorus-31 Nmr Relaxation Studies of Diethyl P- Methoxyphenyl Phosphate Bound to Phosphotriesterase

The effect of MnZ÷/Mn 2÷, Mn2÷/Zn 2÷ and ~VIn2+]Cd 2÷ reconstituted phosphotriesterase on the 3~p spin lattice (1/Tx) relaxation rate of diethyl p-methoxyphenyl phosphate has been investigated. In the presence of MnZ÷/Mn 2+ phosphotriesterase, the spin lattice relaxation rate of the phosphorus atom is enhanced giving an upper limit for the phosphorus-metal root mean-sixth average distance of 4....

متن کامل

Structure of diethyl phosphate bound to the binuclear metal center of phosphotriesterase.

The bacterial phosphotriesterase (PTE) from Pseudomonas diminuta catalyzes the hydrolysis of organophosphate esters at rates close to the diffusion limit. X-ray diffraction studies have shown that a binuclear metal center is positioned in the active site of PTE and that this complex is responsible for the activation of the nucleophilic water from solvent. In this paper, the three-dimensional st...

متن کامل

ذخیره در منابع من


  با ذخیره ی این منبع در منابع من، دسترسی به آن را برای استفاده های بعدی آسان تر کنید

عنوان ژورنال:
  • Biochemistry

دوره 34 25  شماره 

صفحات  -

تاریخ انتشار 1995