Hengstenberg W, Kohlbrecher D, Witt E, Kruse R, Christiansen I, Peters D, Pogge von Strandmann R, Städtler P, Koch B, Kalbitzer H R
Arbeitsgruppe Physiologie der Mikroorganismen, Ruhr-Universität Bochum, FRG.
FEMS Microbiol Rev. 1993 Sep;12(1-3):149-63. doi: 10.1111/j.1574-6976.1993.tb00016.x.
New information about the proteins of the phosphotransferase system (PTS) and of phosphoglycosidases of homofermentative lactic acid bacteria and related species is presented. Tertiary structures were elucidated from soluble PTS components. They help to understand regulatory processes and PTS function in lactic acid bacteria. A tertiary structure of a membrane-bound enzyme II is still not available, but expression of Gram-positive genes encoding enzymes II can be achieved in Escherichia coli and enables the development of effective isolation procedures which are necessary for crystallization experiments. Considerable progress was made in analysing the functions of structural genes which are in close vicinity of the genes encoding the sugar-specific PTS components, such as the genes encoding the tagatose-6-P pathway and the 6-phospho-beta-glycosidases. These phosphoglycosidases belong to a subfamily of the beta-glycosidase family I among about 300 different glycosidases. The active site nucleophile was recently identified to be Glu 358 in Agrobacterium beta-glucosidase. This corresponds to Glu 375 in staphylococcal and lactococcal 6-phospho-beta-galactosidase. This enzyme is inactivated by mutating Glu 375 to Gln. Diffracting crystals of the lactococcal 6-P-beta-galactosidase allow the elucidation of its tertiary structure which helps to derive the structures for the entire glycosidase family 1. In addition, a fusion protein with 6-phospho-beta-galactosidase and staphylococcal protein A was constructed.
本文介绍了同型发酵乳酸菌及相关菌种的磷酸转移酶系统(PTS)蛋白和磷酸糖苷酶的新信息。从可溶性PTS组分阐明了三级结构。它们有助于理解乳酸菌中的调节过程和PTS功能。膜结合酶II的三级结构仍然未知,但编码酶II的革兰氏阳性基因可以在大肠杆菌中表达,并有助于开发结晶实验所需的有效分离程序。在分析与编码糖特异性PTS组分的基因紧密相邻的结构基因的功能方面取得了相当大的进展,例如编码塔格糖-6-磷酸途径和6-磷酸-β-糖苷酶的基因。这些磷酸糖苷酶属于约300种不同糖苷酶中的β-糖苷酶家族I的一个亚家族。最近在农杆菌β-葡萄糖苷酶中鉴定出活性位点亲核试剂为Glu 358。这对应于葡萄球菌和乳球菌6-磷酸-β-半乳糖苷酶中的Glu 375。该酶通过将Glu 375突变为Gln而失活。乳球菌6-P-β-半乳糖苷酶的衍射晶体有助于阐明其三级结构,这有助于推导整个糖苷酶家族1的结构。此外,构建了一种含有6-磷酸-β-半乳糖苷酶和葡萄球菌蛋白A的融合蛋白。