A noncanonical cytochrome <i>c</i> stimulates calcium binding by PilY1 for type IVa pili formation.

Herfurth, Marco; Treuner-Lange, Anke; Glatter, Timo; Wittmaack, Nadine; Hoiczyk, Egbert; Pierik, Antonio J; Søgaard-Andersen, Lotte · Proc Natl Acad Sci U S A · 2022

basic_science · Level V

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Abstract

Type IVa pili (T4aP) are versatile bacterial cell surface structures that undergo extension/adhesion/retraction cycles powered by the cell envelope-spanning T4aP machine. In this machine, a complex composed of four minor pilins and PilY1 primes T4aP extension and is also present at the pilus tip mediating adhesion. Similar to many several other bacteria, <i>Myxococcus xanthus</i> contains multiple minor pilins/PilY1 sets that are incompletely understood. Here, we report that minor pilins and PilY1 (PilY1.1) of cluster_1 form priming and tip complexes contingent on calcium and a noncanonical cytochrome <i>c</i> (TfcP) with an unusual His/Cys heme ligation. We provide evidence that TfcP is unlikely to participate in electron transport and instead stimulates calcium binding by PilY1.1 at low-calcium concentrations, thereby stabilizing PilY1.1 and enabling T4aP function in a broader range of calcium concentrations. These results not only identify a previously undescribed function of cytochromes <i>c</i> but also illustrate how incorporation of an accessory factor expands the environmental range under which the T4aP system functions.

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