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Genetic manipulation of pathogenic Leptospira: CRISPR interference (CRISPRi)-mediated gene silencing and rapid mutant recovery at 37 °C

机译:致病性Leptospira的遗传操作:Crisprpr,干扰(Crispri)介导的基因沉默和37°C的快速突变恢复

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摘要

Abstract Leptospirosis is a neglected, widespread zoonosis caused by pathogenic species of the genus Leptospira, and is responsible for 60,000 deaths per year. Pathogenic mechanisms of leptospirosis remain poorly understood mainly because targeted mutations or gene silencing in pathogenic Leptospira continues to be inherently inefficient, laborious, costly and difficult to implement. In addition, pathogenic leptospires are highly fastidious and the selection of mutants on solid agar media can take up to 6 weeks. The catalytically inactive Cas9 (dCas9) is an RNA-guided DNA-binding protein from the Streptococcus pyogenes CRISPR/Cas system and can be used for gene silencing, in a strategy termed CRISPR interference (CRISPRi). Here, this technique was employed to silence genes encoding major outer membrane proteins of pathogenic L. interrogans. Conjugation protocols were optimized using the newly described HAN media modified for rapid mutant recovery at 37 °C in 3% CO2 within 8 days. Complete silencing of LipL32 and concomitant and complete silencing of both LigA and LigB outer membrane proteins were achieved, revealing for the first time that Lig proteins are involved in pathogenic Leptospira serum resistance. Gene silencing in pathogenic leptospires and rapid mutant recovery will facilitate novel studies to further evaluate and understand pathogenic mechanisms of leptospirosis.
机译:摘要乳化虫病是一种被忽视的,由lepterospira的致病性物种引起的普遍普遍普遍的群藻病,负责每年60,000人死亡。乳化梭菌病的致病机制仍然是较差的理解,主要是因为靶向叶波螺旋体中的靶向突变或基因沉默仍然是效率低下,费力,昂贵,难以实施的。此外,致病性瘦性的斑纹极度非常挑剔,并且在固体琼脂培养基上的突变体的选择可能需要长达6周。催化活性CAS9(DCAS9)是来自链球菌的RNA引导的DNA结合蛋白,可用于基因沉默,在策略中被称为CRISPR干扰(CRISPRI)。这里,该技术用于沉默基因编码致病性L.犯罪者的主要外膜蛋白。使用在8天内在3%CO 2中在3%CO 2中在37℃下改性的新描述的汉培培培回合物进行优化缀合方案。实现LiPl32的完全沉默,并伴随着L​​IGA和LIGB外膜蛋白的完全沉默,首次揭示了LIG蛋白参与致病性钩端螺旋体血清耐药性。致病性瘦性的基因沉默和快速突变恢复将促进新的研究,以进一步评估和理解钩端螺旋体病的致病机制。

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