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The C-terminal linker of Escherichia coliFtsZ functions as an intrinsically disordered peptide

机译:大肠杆菌FtsZ的C末端接头起内在无序的肽的作用

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The tubulin homologue FtsZ provides the cytoskeletal framework and constriction force for bacterial cell division. FtsZ has an ~50-amino-acid (aa) linker between the protofilament-forming globular domain and the C-terminal (Ct) peptide that binds FtsA and ZipA, tethering FtsZ to the membrane. This Ct-linker is widely divergent across bacterial species and thought to be an intrinsically disordered peptide (IDP). We confirmed that the Ct-linkers from three bacterial species behaved as IDPsin vitro by circular dichroism and trypsin proteolysis. We made chimeras, swapping the Escherichia coli linker for Ct-linkers from other bacteria, and even for an unrelated IDP from human α-adducin. Most substitutions allowed for normal cell division, suggesting that sequence of the IDP did not matter. With few exceptions, almost any sequence appears to work. Length, however, was important: IDPs shorter than 43 or longer than 95aa had compromised or no function. We conclude that the Ct-linker functions as a flexible tether between the globular domain of FtsZ in the protofilament, and its attachment to FtsA/ZipA at the membrane. Modelling the Ct-linker as a worm-like chain, we predict that it functions as a stiff entropic spring linking the bending protofilaments to the membrane.
机译:微管蛋白同源物FtsZ为细菌细胞分裂提供了细胞骨架和收缩力。 FtsZ在形成原丝的球状结构域和结合FtsA和ZipA的C端(Ct)肽之间具有〜50个氨基酸(aa)接头,将FtsZ束缚在膜上。这种Ct-接头在细菌物种之间差异很大,被认为是一种固有的无序肽(IDP)。我们证实,通过圆二色性和胰蛋白酶水解,来自三种细菌的Ct接头在体外表现为IDPs。我们制作了嵌合体,将大肠杆菌接头换成其他细菌的Ct接头,甚至换成人类α-adducin的无关IDP。大多数替代都允许正常的细胞分裂,这表明IDP的序列无关紧要。除了极少数例外,几乎所有顺序都可以使用。但是,长度很重要:短于43或长于95aa的IDP受损或无功能。我们得出的结论是,Ct-接头在原丝中FtsZ的球状结构域及其在膜上与FtsA / ZipA的连接之间起着柔性束缚的作用。将Ct接头建模为蠕虫状链,我们预测它充当将弯曲的原丝连接到膜的刚性熵弹簧。

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