Leishmania protein KMP-11 modulates cholesterol transport and membrane fluidity to facilitate host cell invasion.

IF 6.5 1区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY
Achinta Sannigrahi, Souradeepa Ghosh, Supratim Pradhan, Pulak Jana, Junaid Jibran Jawed, Subrata Majumdar, Syamal Roy, Sanat Karmakar, Budhaditya Mukherjee, Krishnananda Chattopadhyay
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引用次数: 0

Abstract

The first step of successful infection by any intracellular pathogen relies on its ability to invade its host cell membrane. However, the detailed structural and molecular understanding underlying lipid membrane modification during pathogenic invasion remains unclear. In this study, we show that a specific Leishmania donovani (LD) protein, KMP-11, forms oligomers that bridge LD and host macrophage (MΦ) membranes. This KMP-11 induced interaction between LD and MΦ depends on the variations in cholesterol (CHOL) and ergosterol (ERG) contents in their respective membranes. These variations are crucial for the subsequent steps of invasion, including (a) the initial attachment, (b) CHOL transport from MΦ to LD, and (c) detachment of LD from the initial point of contact through a liquid ordered (Lo) to liquid disordered (Ld) membrane-phase transition. To validate the importance of KMP-11, we generate KMP-11 depleted LD, which failed to attach and invade host MΦ. Through tryptophan-scanning mutagenesis and synthesized peptides, we develop a generalized mathematical model, which demonstrates that the hydrophobic moment and the symmetry sequence code at the membrane interacting protein domain are key factors in facilitating the membrane phase transition and, consequently, the host cell infection process by Leishmania parasites.

利什曼病菌蛋白 KMP-11 可调节胆固醇转运和膜流动性,从而促进宿主细胞入侵。
任何细胞内病原体成功感染的第一步都依赖于其侵入宿主细胞膜的能力。然而,对病原体入侵过程中脂质膜修饰的详细结构和分子认识仍不清楚。在这项研究中,我们发现一种特异性的多诺万利什曼病(LD)蛋白--KMP-11会形成寡聚体,在LD膜和宿主巨噬细胞(MΦ)膜之间架起桥梁。KMP-11诱导的LD和MΦ之间的相互作用取决于它们各自膜上胆固醇(CHOL)和麦角固醇(ERG)含量的变化。这些变化对随后的侵袭步骤至关重要,包括:(a)最初的附着;(b)CHOL 从 MΦ 运输到 LD;以及(c)LD 通过液态有序(Lo)到液态无序(Ld)的膜相转变从最初的接触点脱离。为了验证 KMP-11 的重要性,我们生成了去除了 KMP-11 的 LD,这种 LD 无法附着和侵入宿主 MΦ。通过色氨酸扫描诱变和合成肽,我们建立了一个广义数学模型,证明膜相互作用蛋白结构域的疏水力矩和对称序列代码是促进膜相转变的关键因素,进而促进利什曼原虫感染宿主细胞的过程。
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来源期刊
EMBO Reports
EMBO Reports 生物-生化与分子生物学
CiteScore
11.20
自引率
1.30%
发文量
267
审稿时长
1 months
期刊介绍: EMBO Reports is a scientific journal that specializes in publishing research articles in the fields of molecular biology, cell biology, and developmental biology. The journal is known for its commitment to publishing high-quality, impactful research that provides novel physiological and functional insights. These insights are expected to be supported by robust evidence, with independent lines of inquiry validating the findings. The journal's scope includes both long and short-format papers, catering to different types of research contributions. It values studies that: Communicate major findings: Articles that report significant discoveries or advancements in the understanding of biological processes at the molecular, cellular, and developmental levels. Confirm important findings: Research that validates or supports existing knowledge in the field, reinforcing the reliability of previous studies. Refute prominent claims: Studies that challenge or disprove widely accepted ideas or hypotheses in the biosciences, contributing to the correction and evolution of scientific understanding. Present null data: Papers that report negative results or findings that do not support a particular hypothesis, which are crucial for the scientific process as they help to refine or redirect research efforts. EMBO Reports is dedicated to maintaining high standards of scientific rigor and integrity, ensuring that the research it publishes contributes meaningfully to the advancement of knowledge in the life sciences. By covering a broad spectrum of topics and encouraging the publication of both positive and negative results, the journal plays a vital role in promoting a comprehensive and balanced view of scientific inquiry. 
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