Carbon utilization phenome of Leptospira interrogans serovar Manilae strain K64

Ailyn Manglicmot-Yabes, M. VillanuevaSharonYvetteAngelina, N. Gloriani
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Abstract

Background: Leptospirosis, an acute febrile disease caused by the pathogenic species of genus Leptospira, is one of the neglected emerging zoonoses that is of global public health concern. The recent genus-wide sequencing of Leptospira isolates led to the need for better understanding of the complex metabolic mechanisms of this organism. However, majority of the published studies on Leptospira metabolism were still the pioneering works of Baseman and Cox in the 60’s and their contemporaries. Knowledge on the carbon sources that supports the growth of a Leptospira species will not only contribute to the limited metabolic studies but will further support the reported genes and metabolic pathways of this organism. Objective:  Thus, this study aimed to describe the carbon utilization phenome of Leptospira interrogans serovar Manilae strain K64, one of the dominantly circulating pathogenic Leptospira in the Philippines. Methods:  A previously optimized BiologTM Gen III sole carbon utilization phenotype microarray assay protocol for leptospires was adapted. Results:  L. interrogans serovar Manilae strain K64 showed utilization of 29 carbon sources belonging to sugars and sugar derivatives, amino acids, methyl ester, carboxylic acid and fatty acids. These were N-acetyl-β-D-mannosamine, N-acetyl-D-galactosamine, N-acetyl neuraminic acid, D-fructose, D-galactose, 3-methyl glucose, D-fucose, L-fucose, L-rhamnose, inosine, D-fructose-6-phosphate, D-gluconic, D-glucuronic acid, glucuronamide, D-saccharic acid, D-aspartic acid, D-serine,  L-alanine, L-arginine,  L-histidine, L-pyroglutamic acid, L-serine, D-lactic acid methyl ester, citric acid, D-malic acid, L-malic acid, alpha ketoglutaric acid, alpha ketobutyric acid, and acetoacetic acid.  Discussion and Conclusion:  The carbon sources utilized by L. interrogans serovar Manilae strain K64 agreed well with the identified genes and metabolic pathways among Leptospira species.  Moreover, these 29 carbon sources have been previously reported to be associated in the biosynthesis of peptidoglycan, lipopolysaccharide, histidine, sulfur, amino acids, and isoleucine and in other metabolic pathways such as glycolysis, pentose-phosphate, pyruvate and fatty acid in Leptospira spp.
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马尼拉钩端螺旋体菌株K64的碳利用现象
背景:钩端螺旋体病是一种由钩端螺旋体属致病性物种引起的急性发热性疾病,是被忽视的新兴人畜共患病之一,是全球公共卫生关注的问题。最近钩端螺旋体分离物的全属测序导致需要更好地了解这种有机体的复杂代谢机制。然而,大多数已发表的关于钩端螺旋体代谢的研究仍然是60年代Baseman和Cox及其同时代人的开创性作品。了解支持钩端螺旋体生长的碳源不仅有助于有限的代谢研究,而且将进一步支持已报道的该生物的基因和代谢途径。目的:本研究旨在描述菲律宾主要流行致病性钩端螺旋体之一马尼拉钩端螺旋体血清型K64株的碳利用现象。方法:采用先前优化的BiologTM第三代单碳利用表型芯片检测钩端螺旋体。结果:审问乳杆菌马尼拉菌株K64对糖及糖衍生物、氨基酸、甲酯、羧酸和脂肪酸等29种碳源均有利用。它们是n -乙酰基-β-D-甘露糖胺、n -乙酰基-D-半乳糖胺、n -乙酰基神经氨酸、D-果糖、D-半乳糖、3-甲基葡萄糖、D-福斯、L-福斯、L-鼠李糖、肌苷、D-果糖-6-磷酸、D-葡萄糖醛酸、葡萄糖醛酸、葡萄糖醛酸、D-糖精、D-糖精酸、D-天冬氨酸、D-丝氨酸、L-丙氨酸、L-精氨酸、L-组氨酸、L-焦谷氨酸、L-丝氨酸、D-乳酸甲酯、柠檬酸、D-苹果酸、L-苹果酸、α酮戊二酸、α酮丁酸和乙酰乙酸。讨论与结论:审问L. serovar manila菌株K64利用的碳源与所鉴定的钩端螺旋体物种间的基因和代谢途径基本一致。此外,这29种碳源已被报道与钩端螺旋体的肽聚糖、脂多糖、组氨酸、硫、氨基酸和异亮氨酸的生物合成以及其他代谢途径如糖酵解、戊糖-磷酸、丙酮酸和脂肪酸有关。
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