Luo Y, Pfister P, Leisinger T, Wasserfallen A
Institute of Microbiology, Swiss Federal Institute of Technology Zürich, CH-8092 Zürich, Switzerland.
J Bacteriol. 2001 Oct;183(19):5788-92. doi: 10.1128/JB.183.19.5788-5792.2001.
Methanothermobacter wolfeii (formerly Methanobacterium wolfei), a thermophilic methanoarchaeon whose cultures lyse upon hydrogen starvation, carries a defective prophage called PsiM100 on its chromosome. The nucleotide sequence of PsiM100 and its flanking regions was established and compared to that of the previously sequenced phage PsiM2 of Methanothermobacter marburgensis (formerly Methanobacterium thermoautotrophicum Marburg). The PsiM100 genome extends over 28,798 bp, and its borders are defined by flanking 21-bp direct repeats of a pure-AT sequence, which very likely forms the core of the putative attachment site where the crossing over occurred during integration. A large fragment of 2,793 bp, IFa, apparently inserted into PsiM100 but is absent in the genome of PsiM2. The remaining part of the PsiM100 genome showed 70.8% nucleotide sequence identity to the whole genome of PsiM2. Thirty-four open reading frames (ORFs) on the forward strand and one ORF on the reverse strand were identified in the PsiM100 genome. Comparison of PsiM100-encoded ORFs to those encoded by phage PsiM2 and to other known protein sequences permitted the assignment of putative functions to some ORFs. The ORF28 protein of PsiM100 was identified as the previously known autolytic enzyme pseudomurein endoisopeptidase PeiW produced by M. wolfeii.
沃尔菲嗜热甲烷杆菌(以前称为沃尔夫甲烷杆菌)是一种嗜热甲烷古菌,其培养物在氢饥饿时会裂解,在其染色体上携带一种有缺陷的原噬菌体,称为PsiM100。确定了PsiM100及其侧翼区域的核苷酸序列,并将其与先前测序的马尔堡嗜热甲烷杆菌(以前称为自养嗜热甲烷杆菌马尔堡菌株)的噬菌体PsiM2的核苷酸序列进行了比较。PsiM100基因组长度超过28798 bp,其边界由一个纯AT序列的21 bp侧翼直接重复序列定义,该序列很可能形成了推定附着位点的核心,在整合过程中交叉发生于此。一个2793 bp的大片段IFa显然插入到PsiM100中,但在PsiM2的基因组中不存在。PsiM100基因组的其余部分与PsiM2的全基因组显示出70.8%的核苷酸序列同一性。在PsiM100基因组中,在前导链上鉴定出34个开放阅读框(ORF),在反向链上鉴定出1个ORF。将PsiM100编码的ORF与噬菌体PsiM2编码的ORF以及其他已知蛋白质序列进行比较,使得能够为一些ORF赋予推定功能。PsiM100的ORF28蛋白被鉴定为先前已知的由沃尔菲嗜热甲烷杆菌产生的自溶酶假肽聚糖内肽酶PeiW。