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结构功能分析 Sedolisins:真菌中三肽基肽酶和内肽酶亚家族的进化。

Structure-function analysis of Sedolisins: evolution of tripeptidyl peptidase and endopeptidase subfamilies in fungi.

机构信息

Instituto de Investigaciones Biológicas (IIB-CONICET-UNMdP), Facultad de Ciencias Exactas y Naturales, Universidad Nacional de Mar del Plata, CC 1245, 7600, Mar del Plata, Argentina.

出版信息

BMC Bioinformatics. 2018 Dec 4;19(1):464. doi: 10.1186/s12859-018-2404-y.

Abstract

BACKGROUND

Sedolisins are acid proteases that are related to the basic subtilisins. They have been identified in all three superkingdoms but are not ubiquitous, although fungi that secrete acids as part of their lifestyle can have up to six paralogs. Both TriPeptidyl Peptidase (TPP) and endopeptidase activity have been identified and it has been suggested that these correspond to separate subfamilies.

RESULTS

We studied eukaryotic sedolisins by computational analysis. A maximum likelihood tree shows one major clade containing non-fungal sequences only and two major as well as two minor clades containing only fungal sequences. One of the major fungal clades contains all known TPPs whereas the other contains characterized endosedolisins. We identified four Cluster Specific Inserts (CSIs) in endosedolisins, of which CSIs 1, 3 and 4 appear as solvent exposed according to structure modeling. Part of CSI2 is exposed but a short stretch forms a novel and partially buried α-helix that induces a conformational change near the binding pocket. We also identified a total of 15 specificity determining positions (SDPs) of which five, identified in two independent analyses, form highly connected SDP sub-networks. Modeling of virtual mutants suggests a key role for the W307A or F307A substitution. The remaining four key SDPs physically interact at the interface of the catalytic domain and the enzyme's prosegment. Modeling of virtual mutants suggests these SDPs are indeed required to compensate the conformational change induced by CSI2 and the A307. One of the two small fungal clades concerns a subfamily that contains 213 sequences, is mostly similar to the major TPP subfamily but differs, interestingly, in position 307, showing mostly isoleucine and threonine.

CONCLUSIONS

Analysis confirms there are at least two sedolisin subfamilies in fungi: TPPs and endopeptidases, and suggests a third subfamily with unknown characteristics. Sequence and functional diversification was centered around buried SDP307 and resulted in a conformational change of the pocket. Mutual Information network analysis forms a useful instrument in the corroboration of predicted SDPs.

摘要

背景

Sedolisins 是一种酸性蛋白酶,与碱性枯草杆菌蛋白酶有关。它们已在所有三个超级王国中被发现,但并非无处不在,尽管分泌酸作为其生活方式一部分的真菌可以拥有多达六个旁系同源物。已鉴定出三肽酰肽酶(TPP)和内切酶活性,并提出这些对应于不同的亚科。

结果

我们通过计算分析研究了真核 sedolisins。最大似然树显示一个主要分支仅包含非真菌序列,以及两个主要分支和两个次要分支仅包含真菌序列。主要真菌分支之一包含所有已知的 TPP,而另一个分支则包含有特征的内切枯草杆菌蛋白酶。我们在内切枯草杆菌蛋白酶中鉴定出四个簇特异性插入物(CSIs),其中 CSIs 1、3 和 4 根据结构建模显示为溶剂暴露。CSIs2 的一部分暴露,但一小段形成新颖的部分掩埋α-螺旋,在靠近结合口袋处诱导构象变化。我们还总共鉴定出 15 个特异性决定位置(SDPs),其中两个独立分析中鉴定出的五个形成高度连接的 SDP 子网。虚拟突变体的建模表明 W307A 或 F307A 取代的关键作用。其余四个关键 SDP 在催化结构域和酶的前结构域的界面处物理相互作用。虚拟突变体的建模表明,这些 SDP 确实需要补偿 CSI2 和 A307 诱导的构象变化。两个较小的真菌分支之一涉及一个亚科,其中包含 213 个序列,主要与主要 TPP 亚科相似,但有趣的是在位置 307 不同,主要显示异亮氨酸和苏氨酸。

结论

分析证实真菌中至少存在两个 sedolisin 亚科:TPP 和内肽酶,并提出了具有未知特征的第三个亚科。序列和功能多样化集中在埋藏的 SDP307 周围,并导致口袋构象发生变化。互信息网络分析形成了一种有用的工具,用于佐证预测的 SDP。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ee34/6278154/456b313ddda3/12859_2018_2404_Fig1_HTML.jpg

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