Comparative study of adenosine 3'-pyrophosphokinase domains of MuF polymorphic toxins.

IF 2.8 4区 生物学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY
Eloïse M Paulet, Julia Bartoli, Atakan Kabtan, Chloé M Piras, Audrey C Tempier, Eric Cascales, Julie P Viala
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引用次数: 0

Abstract

Polymorphic toxins (PT) are multidomain proteins used for interbacterial competition and pathogenesis. The N-terminal domain of PT specifies the mode of transport and names the family, while the variable C-terminal domain carries the toxic activity, which can be counteracted by immunity proteins that protect the PT-producing bacterium. The MuF family of polymorphic toxins is specifically associated with temperate phages, and our recent work showed that the C-terminal domain of a MuF toxin encoded by a Streptococcus pneumoniae prophage carries adenosine 3'-pyrophosphokinase activity. This type of toxin, which combines a MuF N-terminal domain and an adenosine 3'-pyrophosphokinase C-terminal domain, is called Apk2 for adenosine 3'-pyrophosphokinase family 2. Here, we extend the characterization of this novel family of toxins by providing information on two new members encoded by prophages of Mannheimia haemolytica and Pasteurella multocida. Production of their adenosine 3'-pyrophosphokinase domains (Apk2tox) in the heterologous host Escherichia coli revealed different levels of toxicity, essentially due to their stability. In vitro assays with the purified M. haemolytica Apk2tox domain demonstrated that, identically to that of S. pneumoniae, it exclusively produces (p)ppApp from ATP. The role of immunity proteins and their interchangeability in cross-protection and protein-protein interaction assays was tested. While the immunity proteins that hydrolyse pppApp to ATP are interchangeable, those that inhibit the toxin by protein-protein interaction are mainly active against their intrastrain partner. Overall, this study highlights the conserved features of these enzymatic domains, such as their toxicity, their specific activity toward ATP, and their universal and specific immunities.

MuF多态毒素腺苷3′-焦磷酸激酶结构域的比较研究。
多态毒素是一种多结构域蛋白,用于细菌间的竞争和致病机制。PT的n端结构域指定转运方式并命名家族,而可变的c端结构域携带毒性活性,可被保护PT产生细菌的免疫蛋白抵消。多态毒素MuF家族与温带噬菌体特异性相关,我们最近的工作表明,由肺炎链球菌前噬菌体编码的MuF毒素的c端结构域具有腺苷3'-焦磷酸激酶活性。这种毒素结合了MuF n端结构域和腺苷3′-焦磷酸激酶c端结构域,被称为Apk2,即腺苷3′-焦磷酸激酶家族2。在这里,我们通过提供溶血性曼海姆病和多杀性巴氏杆菌噬菌体编码的两个新成员的信息,扩展了这一新型毒素家族的特征。它们的腺苷3'-焦磷酸激酶结构域(Apk2tox)在异源宿主大肠杆菌中的产生显示出不同程度的毒性,主要是由于它们的稳定性。用纯化的溶血分枝杆菌Apk2tox结构域进行的体外实验表明,与肺炎链球菌一样,它只从ATP中产生ppApp。免疫蛋白在交叉保护和蛋白-蛋白相互作用试验中的作用及其互换性进行了测试。虽然将ppppapp水解为ATP的免疫蛋白是可互换的,但那些通过蛋白-蛋白相互作用抑制毒素的免疫蛋白主要对其株内伴侣有效。总的来说,这项研究强调了这些酶结构域的保守特征,如它们的毒性,它们对ATP的特异性活性,以及它们的普遍和特异性免疫。
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来源期刊
FEBS Open Bio
FEBS Open Bio BIOCHEMISTRY & MOLECULAR BIOLOGY-
CiteScore
5.10
自引率
0.00%
发文量
173
审稿时长
10 weeks
期刊介绍: FEBS Open Bio is an online-only open access journal for the rapid publication of research articles in molecular and cellular life sciences in both health and disease. The journal''s peer review process focuses on the technical soundness of papers, leaving the assessment of their impact and importance to the scientific community. FEBS Open Bio is owned by the Federation of European Biochemical Societies (FEBS), a not-for-profit organization, and is published on behalf of FEBS by FEBS Press and Wiley. Any income from the journal will be used to support scientists through fellowships, courses, travel grants, prizes and other FEBS initiatives.
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