Protein Information

ID 1664
Name COCH
Synonyms COCH; COCH 5B2; COCH5B2; Cochlin; Cochlin precursor; DFNA 9; DFNA31; DFNA9…

Compound Information

ID 730
Name OCH
CAS 2,3,4,4,5,5,6,6-octachloro-2-cyclohexen-1-one

Reference

PubMed Abstract RScore(About this table)
14982463 Ochiai M, Lin YS, Yamada J, Misawa H, Arai S, Matsumoto K: Reactions of a platinum (III) dimeric complex with alkynes in water: novel approach to alpha-aminoketone, alpha-iminoketone, and alpha,beta-diimine via ketonyl-Pt (III) dinuclear complexes. J Am Chem Soc. 2004 Mar 3;126(8):2536-45.
Reaction of the platinum (III) dimeric complex [Pt (2)(NH (3))(4)((CH (3))(3) CCONH)(2)(NO (3))(2)](NO (3))(2) (1), prepared in situ by the oxidation of the platinum blue complex [Pt (4)(NH (3))(8)((CH (3))(3) CCONH)(4)](NO (3))(5) (2) with Na (2) S (2) O (8), with terminal alkynes CH [triple bond] CR (R = (CH (2))(n) CH (3) (n = 2-5), (CH (2))(n) CH (2) OH (n = 0-2), CH (2) OCH (3), and Ph), in water gave a series of ketonyl-Pt (III) dinuclear complexes [Pt (2)(NH (3))(4)((CH (3))(3) CCONH)(2)(CH (2) COR)](NO (3))(3) (3, R = (CH (2))(2) CH (3); 4, R = (CH (2))(3) CH (3); 5, R = (CH (2))(4) CH (3); 6, R = (CH (2))(5) CH (3); 7, R = CH (2) OH; 8, R = CH (2) CH (2) OH; 9, R = (CH (2))(2) CH (2) OH; 10, R = CH (2) OCH (3); 11, R = Ph). Internal alkyne 2-butyne reacted with 1 to form the complex [Pt (2)(NH (3))(4)((CH (3))(3) CCONH)(2)(CH (CH (3)) COCH (3))](NO (3))(3) (12). These reactions show that Pt (III) reacts with alkynes to give various ketonyl complexes. Coordination of the triple bond to the Pt (III) atom at the axial position, followed by nucleophilic attack of water and hydrogen shift from the enol to keto form, would be the mechanism. The structures of complexes 3.H (2) O, 7.0.5C (3) H (4) O, 9, 10, and 12 have been confirmed by X-ray diffraction analysis. A competitive reaction between equimolar 1-pentyne and 1-pentene toward 1 produced complex 3 and [Pt (2)(NH (3))(4)((CH (3))(3) CCONH)(2)(CH (2) CH (OH) CH (2) CH (2) CH (3))](NO (3))(3 ) (14) at a molar ratio of 9:1, suggesting that alkyne is more reactive than alkene. The ketonyl-Pt (III) dinuclear complexes are susceptible to nucleophiles, such as amines, and the reactions with secondary and tertiary amines give the corresponding alpha-amino-substituted ketones and the reduced Pt (II) complex quantitatively. In the reactions with primary amines, the once formed alpha-amino-substituted ketones were further converted to the iminoketones and diimines. The nucleophilic attack at the ketonyl group of the Pt (III) complexes provides a convenient means for the preparation of alpha-aminoketones, alpha-iminoketones, and diimines from the corresponding alkynes and amines.
1(0,0,0,1)