Mahrouki S, Ben-Achour N, Chouchani C, Ben-Moussa M, Belhadj O
Laboratoire de biochimie et de technobiologie, faculté des sciences de Tunis, campus universitaire1 El-Manar-II, 2092 Tunis, Tunisia.
Pathol Biol (Paris). 2009 May;57(3):e55-9. doi: 10.1016/j.patbio.2008.02.021. Epub 2008 May 5.
Emergence and dissemination of multiresistant strain of Proteus mirabilis have made infections treatment more difficult that this bacterium is responsible. The aim of this study is to determine the implication of the enzymatic mechanism and to describe the properties of ESBLs (extended spectrum beta-lactamases). A clinical strain of Proteus mirabilis SM514 isolated in the intensive care unit at the Military hospital in Tunisia during the period 2004 was found to be highly resistant to cephalosporins and penicilins. Cells sonicate of the isolate hydrolysed cefotaxime more efficiently than ceftriaxone and ceftazidime and had three beta-lactamases bands of approximate of isoelectric points (pI) of 5.4; 5.6 and superior to 7.6. The specific activities (AS) vary from 5.26 to 7.77U/mg of protein respectively for cefotaxime and the benzylpenicillin. These activities are inhibited by the clavulanic acid and the sulbactam. The values of the IC(50) are respectively 3.7 and 11.7muM. Only the beta-lactamases of pI 5.4 and superior to 7.6 hydrolyze the cefotaxime. Transformant produces the ESBLs of pI 5.4; 7.45 and greater than 7.6. The genes coding for this enzymes are carried by a transferable plasmids.
奇异变形杆菌多重耐药菌株的出现和传播使该细菌所致感染的治疗变得更加困难。本研究的目的是确定酶促机制的影响并描述超广谱β-内酰胺酶(ESBLs)的特性。2004年期间在突尼斯军事医院重症监护病房分离出的一株奇异变形杆菌临床菌株SM514被发现对头孢菌素和青霉素具有高度耐药性。该分离株的细胞超声裂解物对头孢噻肟的水解效率高于头孢曲松和头孢他啶,并且有三条β-内酰胺酶带,其等电点(pI)约为5.4、5.6和高于7.6。头孢噻肟和苄青霉素的比活性(AS)分别为5.26至7.77U/mg蛋白质。这些活性受到克拉维酸和舒巴坦的抑制。IC50值分别为3.7和11.7μM。只有pI为5.4和高于7.6的β-内酰胺酶能水解头孢噻肟。转化体产生pI为5.4、7.45和大于7.6的ESBLs。编码这种酶的基因由可转移质粒携带。