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Rts1 DNA的三个短片段导致宿主细菌出现温度敏感生长表型(Tsg)。

Three short fragments of Rts1 DNA are responsible for the temperature-sensitive growth phenotype (Tsg) of host bacteria.

作者信息

Mochida S, Tsuchiya H, Mori K, Kaji A

机构信息

Department of Microbiology, School of Medicine, University of Pennsylvania, Philadelphia 19104-6076.

出版信息

J Bacteriol. 1991 Apr;173(8):2600-7. doi: 10.1128/jb.173.8.2600-2607.1991.

Abstract

Rts1 is a multiphenotype drug resistance factor, and one of its phenotypes is temperature-sensitive growth (Tsg) of host bacteria. A 3.65-kb fragment from Rts1 DNA was shown to cause the Tsg phenotype in host cells. This tsg fragment was split by a restriction enzyme, HincII, into four fragments. Two of these fragments were called HincII-S (short) and HincII-L (long), respectively. Each of these two fragments conferred the Tsg phenotype, indicating that, in fact, these two independent regions were responsible for the Tsg phenotype. The HincII-S 783-bp and HincII-L 1,479-bp fragments were sequenced. The region in the HincII-S fragment to which the Tsg phenotype was attributed was narrowed to a 146-bp (nucleotides 1 to 146) fragment by various restriction enzyme digestions. Further digestion of the 146-bp fragment with Bal 31 suggested that the 116-bp (nucleotides 9 to 124) fragment is the minimum sequence required for Tsg. On the other hand, in the HincII-L fragment, a fragment of 249 bp (nucleotides 1210 to 1458) and a fragment of 321 bp (nucleotides 1942 to 2262) contained separate temperature-sensitive growth activity. None of three tsg fragments contained open reading frames. The 249-bp fragment had very weak Tsg activity, while the 321-bp fragment had no Tsg activity. On the other hand, when these two fragments were together in the pUC19 vector, they exhibited very strong Tsg activity equivalent to that of the original 1,479-bp fragment. In addition, two of the 249-bp fragments gave similar, strong Tsg activity. The HincII-L 1,479-bp fragment contained an open reading frame for kanamycin resistance which was found between nucleotides 1423 and 2238. This kanamycin resistance gene sequence was different from that of the reported kanamycin resistance gene of Tn903 at 12 positions which were deduced to change seven amino acids.

摘要

Rts1是一种多表型耐药因子,其表型之一是宿主细菌的温度敏感生长(Tsg)。来自Rts1 DNA的一个3.65 kb片段被证明可在宿主细胞中导致Tsg表型。这个tsg片段被限制性内切酶HincII切割成四个片段。其中两个片段分别称为HincII-S(短片段)和HincII-L(长片段)。这两个片段中的每一个都赋予了Tsg表型,表明实际上这两个独立区域负责Tsg表型。对HincII-S的783 bp和HincII-L的1479 bp片段进行了测序。通过各种限制性内切酶消化,将HincII-S片段中赋予Tsg表型的区域缩小到一个146 bp(核苷酸1至146)的片段。用Bal 31对146 bp片段进行进一步消化表明,116 bp(核苷酸9至124)的片段是Tsg所需的最小序列。另一方面,在HincII-L片段中,一个249 bp(核苷酸1210至1458)的片段和一个321 bp(核苷酸1942至2262)的片段具有独立的温度敏感生长活性。三个tsg片段中均未包含开放阅读框。249 bp片段的Tsg活性非常弱,而321 bp片段没有Tsg活性。另一方面,当这两个片段一起存在于pUC19载体中时,它们表现出与原始1479 bp片段相当的非常强的Tsg活性。此外,两个249 bp片段产生了相似的强Tsg活性。HincII-L的1479 bp片段包含一个卡那霉素抗性开放阅读框,位于核苷酸1423和2238之间。该卡那霉素抗性基因序列与报道的Tn903卡那霉素抗性基因在12个位置不同,据推测这些位置会改变7个氨基酸。

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