CryoEM reveals the structure of an archaeal pilus involved in twitching motility

Author:

Gaines Matthew C.,Sivabalasarma Shamphavi,Isupov Michail N.ORCID,Haque Risat Ul,McLaren MathewORCID,Hanus CyrilORCID,Gold Vicki A. M.ORCID,Albers Sonja-VerenaORCID,Daum BertramORCID

Abstract

AbstractAmongst the major types of archaeal filaments, several have been shown to closely resemble bacterial homologues of the Type IV pili (T4P). Within Sulfolobales, member species encode for three types of T4P, namely the archaellum, the UV-inducible pilus system (Ups) and the archaeal adhesive pilus (Aap). Whereas the archaellum functions primarily in swimming motility, and the Ups in UV-induced cell aggregation and DNA-exchange, the Aap plays an important role in adhesion and twitching motility. Here, we present a cryoEM structure of the Aap of the archaeal model organism Sulfolobus acidocaldarius. We identify the component subunit as AapB and find that while its structure follows the canonical T4P blueprint, it adopts three distinct conformations within the pilus. The tri-conformer Aap structure that we describe challenges our current understanding of pilus structure and sheds new light on the principles of twitching motility.

Funder

EC | Horizon 2020 Framework Programme

Deutsche Forschungsgemeinschaft

RCUK | Biotechnology and Biological Sciences Research Council

Agence Nationale de la Recherche

Publisher

Springer Science and Business Media LLC

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