School of Molecular Biosciences, College of Veterinary Medicine, Washington State UniversityPullman, WA, United States.
Jefferiss Trust Laboratories, Faculty of Medicine, Imperial College London, St. Mary's HospitalLondon, United Kingdom.
Front Cell Infect Microbiol. 2017 Sep 8;7:394. doi: 10.3389/fcimb.2017.00394. eCollection 2017.
The obligate intracellular pathogen , along with its close species relatives, is known to be strictly dependent upon the availability of iron. Deprivation of iron induces an aberrant morphological phenotype termed "persistence." This persistent phenotype develops in response to various immunological and nutritional insults and may contribute to the development of sub-acute -associated chronic diseases in susceptible populations. Given the importance of iron to , relatively little is understood about its acquisition and its role in gene regulation in comparison to other iron-dependent bacteria. Analysis of the genome sequences of a variety of chlamydial species hinted at the involvement of unconventional mechanisms, being that lack many conventional systems of iron homeostasis that are highly conserved in other bacteria. Herein we detail past and current research regarding chlamydial iron biology in an attempt to provide context to the rapid progress of the field in recent years. We aim to highlight recent discoveries and innovations that illuminate the strategies involved in chlamydial iron homeostasis, including the vesicular mode of acquiring iron from the intracellular environment, and the identification of a putative iron-dependent transcriptional regulator that is synthesized as a fusion with a ABC-type transporter subunit. These recent findings, along with the noted absence of iron-related homologs, indicate that have evolved atypical approaches to the problem of iron homeostasis, reinvigorating research into the iron biology of this pathogen.
专性细胞内病原体及其密切相关的种属被认为严格依赖于铁的可用性。铁剥夺会诱导一种称为“持续存在”的异常形态表型。这种持续存在的表型是对各种免疫和营养挑战的反应,可能导致易感人群中亚急性相关慢性疾病的发展。鉴于铁对 的重要性,与其他依赖铁的细菌相比,相对而言,人们对其获取及其在基因调控中的作用知之甚少。对各种衣原体物种基因组序列的分析暗示了非常规机制的参与,因为 缺乏许多在其他细菌中高度保守的常规铁稳态系统。本文详细介绍了过去和当前关于衣原体铁生物学的研究,试图为近年来该领域的快速发展提供背景。我们旨在强调最近的发现和创新,这些发现和创新阐明了衣原体铁稳态中涉及的策略,包括从细胞内环境中获取铁的囊泡模式,以及鉴定一种可能的铁依赖性转录调节剂,该调节剂与 ABC 型转运体亚基融合合成。这些新发现,以及注意到缺乏与铁相关的同源物,表明 已经进化出了针对铁稳态问题的非典型方法,重新激发了对这种病原体铁生物学的研究。