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人乳 miRNA:多样性及其在营养治疗预防策略中的潜力。

Human Breast Milk miRNAs: Their Diversity and Potential for Preventive Strategies in Nutritional Therapy.

机构信息

Nantes Université, INRAE, UMR 1280, PhAN, F-44000 Nantes, France.

出版信息

Int J Mol Sci. 2023 Nov 9;24(22):16106. doi: 10.3390/ijms242216106.

Abstract

The endogenous miRNAs of breast milk are the products of more than 1000 nonprotein-coding genes, giving rise to mature small regulatory molecules of 19-25 nucleotides. They are incorporated in macromolecular complexes, loaded on Argonaute proteins, sequestrated in exosomes and lipid complexes, or present in exfoliated cells of epithelial, endothelial, or immune origins. Their expression is dependent on the stage of lactation; however, their detection depends on progress in RNA sequencing and the reappraisal of the definition of small RNAs. Some miRNAs from plants are detected in breast milk, opening the possibility of the stimulation of immune cells from the allergy repertoire. Each miRNA harbors a seeding sequence, which targets mRNAs, gene promoters, or long noncoding RNAs. Their activities depend on their bioavailability. Efficient doses of miRNAs are estimated to be roughly 100 molecules in the cytoplasm of target cells from in vitro and in vivo experiments. Each miRNA is included in networks of stimulation/inhibition/sequestration, driving the expression of cellular phenotypes. Three types of stress applied during lactation to manipulate miRNA supply were explored using rodent offspring: a foster mother, a cafeteria diet, and early weaning. This review presents the main mature miRNAs described from current mothers' cohorts and their bioavailability in experimental models as well as studies assessing the potential of miR-26 or miR-320 miRNA families to alter offspring phenotypes.

摘要

母乳中的内源性 miRNAs 是 1000 多个非蛋白编码基因的产物,产生 19-25 个核苷酸的成熟小调控分子。它们被整合到大分子复合物中,装载到 Argonaute 蛋白上,被外泌体和脂质复合物隔离,或存在于上皮、内皮或免疫来源的脱落细胞中。它们的表达依赖于哺乳阶段;然而,它们的检测取决于 RNA 测序的进展和对小 RNA 定义的重新评估。一些来自植物的 miRNAs 在母乳中被检测到,这为从过敏库中刺激免疫细胞开辟了可能性。每个 miRNA 都携带有一个种子序列,靶向 mRNAs、基因启动子或长非编码 RNA。它们的活性取决于它们的生物利用度。从体外和体内实验估计,有效剂量的 miRNA 约为目标细胞细胞质中 100 个分子。每个 miRNA 都包含在刺激/抑制/隔离的网络中,驱动细胞表型的表达。在哺乳期间,通过三种类型的应激来操纵 miRNA 的供应,使用啮齿动物后代进行了探索:养母、自助餐厅饮食和早期断奶。这篇综述介绍了目前从母亲群体中描述的主要成熟 miRNAs 及其在实验模型中的生物利用度,以及评估 miR-26 或 miR-320 miRNA 家族改变后代表型的潜力的研究。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8ee4/10671413/0d1f3db9d90c/ijms-24-16106-g001.jpg

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