Microbiota-Derived Lactate Accelerates Intestinal Stem-Cell-Mediated Epithelial Development

微生物衍生的乳酸加速肠道干细胞介导的上皮发育

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作者:Yong-Soo Lee, Tae-Young Kim, Yeji Kim, Su-Hyun Lee, Seungil Kim, Sung Wan Kang, Jin-Young Yang, In-Jeoung Baek, Young Hoon Sung, Yun-Yong Park, Sung Wook Hwang, Eunju O, Kwang Soon Kim, Siqing Liu, Nobuhiko Kamada, Nan Gao, Mi-Na Kweon

Abstract

Symbionts play an indispensable role in gut homeostasis, but underlying mechanisms remain elusive. To clarify the role of lactic-acid-producing bacteria (LAB) on intestinal stem-cell (ISC)-mediated epithelial development, we fed mice with LAB-type symbionts such as Bifidobacterium and Lactobacillus spp. Here we show that administration of LAB-type symbionts significantly increased expansion of ISCs, Paneth cells, and goblet cells. Lactate stimulated ISC proliferation through Wnt/β-catenin signals of Paneth cells and intestinal stromal cells. Moreover, Lactobacillus plantarum strains lacking lactate dehydrogenase activity, which are deficient in lactate production, elicited less ISC proliferation. Pre-treatment with LAB-type symbionts or lactate protected mice in response to gut injury provoked by combined treatments with radiation and a chemotherapy drug. Impaired ISC-mediated epithelial development was found in mice deficient of the lactate G-protein-coupled receptor, Gpr81. Our results demonstrate that LAB-type symbiont-derived lactate plays a pivotal role in promoting ISC-mediated epithelial development in a Gpr81-dependent manner.

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