Potential molecular patterns for tuberculosis susceptibility in diabetic patients with poor glycaemic control: a pilot study.

IF 2.3 3区 生物学 Q3 BIOCHEMISTRY & MOLECULAR BIOLOGY Molecular Genetics and Genomics Pub Date : 2024-05-27 DOI:10.1007/s00438-024-02139-0
Elena Jaime-Sánchez, Edgar E Lara-Ramírez, Juan Ernesto López-Ramos, Elsy Janeth Ramos-González, Ana Laura Cisneros-Méndez, Juan José Oropeza-Valdez, Roberto Zenteno-Cuevas, Gerardo Martínez-Aguilar, Yadira Bastian, Julio Enrique Castañeda-Delgado, Carmen Judith Serrano, José Antonio Enciso-Moreno
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Abstract

Type 2 diabetes (DM2) is an increasingly prevalent disease that challenges tuberculosis (TB) control strategies worldwide. It is significant that DM2 patients with poor glycemic control (PDM2) are prone to developing tuberculosis. Furthermore, elucidating the molecular mechanisms that govern this susceptibility is imperative to address this problem. Therefore, a pilot transcriptomic study was performed. Human blood samples from healthy controls (CTRL, HbA1c < 6.5%), tuberculosis (TB), comorbidity TB-DM2, DM2 (HbA1c 6.5-8.9%), and PDM2 (HbA1c > 10%) groups (n = 4 each) were analyzed by differential expression using microarrays. We use a network strategy to identify potential molecular patterns linking the differentially expressed genes (DEGs) specific for TB-DM2 and PDM2 (p-value < 0.05, fold change > 2). We define OSM, PRKCD, and SOCS3 as key regulatory genes (KRGs) that modulate the immune system and related pathways. RT-qPCR assays confirmed upregulation of OSM, PRKCD, and SOCS3 genes (p < 0.05) in TB-DM2 patients (n = 18) compared to CTRL, DM2, PDM2, or TB groups (n = 17, 19, 15, and 9, respectively). Furthermore, OSM, PRKCD, and SOCS3 were associated with PDM2 susceptibility pathways toward TB-DM2 and formed a putative protein-protein interaction confirmed in STRING. Our results reveal potential molecular patterns where OSM, PRKCD, and SOCS3 are KRGs underlying the compromised immune response and susceptibility of patients with PDM2 to develop tuberculosis. Therefore, this work paved the way for fundamental research of new molecular targets in TB-DM2. Addressing their cellular implications, and the impact on the diagnosis, treatment, and clinical management of TB-DM2 could help improve the strategy to end tuberculosis for this vulnerable population.

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血糖控制不佳的糖尿病患者对结核病易感性的潜在分子模式:一项试点研究。
2 型糖尿病(DM2)是一种日益流行的疾病,对全球结核病(TB)控制策略构成挑战。血糖控制不佳的 2 型糖尿病患者(PDM2)易患结核病,这一点意义重大。此外,阐明这种易感性的分子机制也是解决这一问题的当务之急。因此,我们进行了一项转录组学试验研究。我们使用芯片对健康对照组(CTRL,HbA1c 10%)(每组 4 人)的人体血液样本进行了差异表达分析。我们采用网络策略来识别连接 TB-DM2 和 PDM2 特异性差异表达基因(DEGs)的潜在分子模式(P 值为 2)。我们将 OSM、PRKCD 和 SOCS3 定义为调节免疫系统和相关通路的关键调控基因 (KRG)。RT-qPCR 检测证实了 OSM、PRKCD 和 SOCS3 基因的上调(p
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来源期刊
Molecular Genetics and Genomics
Molecular Genetics and Genomics 生物-生化与分子生物学
CiteScore
5.10
自引率
3.20%
发文量
134
审稿时长
1 months
期刊介绍: Molecular Genetics and Genomics (MGG) publishes peer-reviewed articles covering all areas of genetics and genomics. Any approach to the study of genes and genomes is considered, be it experimental, theoretical or synthetic. MGG publishes research on all organisms that is of broad interest to those working in the fields of genetics, genomics, biology, medicine and biotechnology. The journal investigates a broad range of topics, including these from recent issues: mechanisms for extending longevity in a variety of organisms; screening of yeast metal homeostasis genes involved in mitochondrial functions; molecular mapping of cultivar-specific avirulence genes in the rice blast fungus and more.
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