Shintani Arisa, Fukai Shoko, Nobusawa Reika, Taniguchi Kanako, Hatatani Tomohiro, Nagai Hayato, Sakai Tomohiro, Yoshimura Takuji, Miyasaka Masayuki, Hayasaka Haruko
Faculty of Science & Engineering, Department of Science, Graduate School of Science and Engineering, Kindai University, 3-4-1, Kowakae, Higashiosaka, Osaka, Japan.
WPI Immunology Frontier Research Center, Osaka University, 2-2, Yamada-oka, Suita, Osaka, Japan.
Curr Res Immunol. 2022 Aug 21;3:175-185. doi: 10.1016/j.crimmu.2022.08.008. eCollection 2022.
Lymphocytes regulate the immune response by circulating between the vascular and lymphatic systems. High endothelial venules, HEVs, special blood vessels expressing selective adhesion molecules, such as PNAd and MAdCAM-1, mediate naïve lymphocyte migration from the vasculature into the lymph nodes and Peyer's patches. We have identified that DACH1 is abundantly expressed in developing HEV-type endothelial cells. DACH1 showed a restricted expression pattern in lymph node blood vessels during the late fetal and early neonatal periods, corresponding to HEV development. The proportion of MAdCAM-1 and CD34 endothelial cells is reduced in the lymph nodes of neonatal conventional and vascular-specific Dach1-deficient mice. Dach1-deficient lymph nodes in adult mice demonstrated a lower proportion of PNAd cells and lower recruitment of intravenously administered lymphocytes from GFP transgenic mice. These findings suggest that DACH1 promotes the expression of HEV-selective adhesion molecules and mediates lymphocyte trafficking across HEVs into lymph nodes.
淋巴细胞通过在血管系统和淋巴系统之间循环来调节免疫反应。高内皮微静脉(HEV)是表达选择性粘附分子(如外周淋巴结地址素(PNAd)和黏膜地址素细胞粘附分子-1(MAdCAM-1))的特殊血管,介导幼稚淋巴细胞从血管系统迁移至淋巴结和派尔集合淋巴结。我们已经确定,DACH1在发育中的HEV型内皮细胞中大量表达。在胎儿晚期和新生儿早期,DACH1在淋巴结血管中呈现出受限的表达模式,这与HEV的发育相对应。在新生常规和血管特异性Dach1缺陷小鼠的淋巴结中,MAdCAM-1和CD34内皮细胞的比例降低。成年小鼠中Dach1缺陷的淋巴结显示PNAd细胞比例较低,并且从绿色荧光蛋白(GFP)转基因小鼠静脉注射的淋巴细胞募集减少。这些发现表明,DACH1促进HEV选择性粘附分子的表达,并介导淋巴细胞通过HEV进入淋巴结的运输过程。