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单羧酸转运蛋白(MCT)家族在小鼠胎盘组织中的细胞表达。

Cellular expression of the monocarboxylate transporter (MCT) family in the placenta of mice.

机构信息

Laboratory of Histology and Cytology, Graduate School of Medicine, Hokkaido University, Sapporo, Japan.

出版信息

Placenta. 2010 Feb;31(2):126-33. doi: 10.1016/j.placenta.2009.11.013. Epub 2009 Dec 21.

Abstract

Lactate plays an important role as an alternative energy substrate, especially in conditions with a decreased utility of glucose. Proton-coupled monocarboxylate transporters (MCTs) are essential for the transport of lactate, ketone bodies, and other monocarboxylates through the plasma membrane and may contribute to the net transport of lactate through the placental barrier. The present study examined the expression profile and subcellular localization of MCTs in the mouse placenta. An in situ hybridization survey of all MCT subtypes detected intense mRNA expressions of MCT1, MCT4, and MCT9 as well as GLUT1 in the placenta from gestational day 11.5. The expression of MCT mRNAs decreased in the intensity at the end of gestation in contrast to a consistently intense expression of GLUT1 mRNA. Immunohistochemically, MCT1 and MCT4 showed a polarized localization on the maternal side and fetal side of the two cell-layered syncytiotrophoblast, respectively. The membrane-oriented localization of MCTs was supported by the coexistence of CD147 which recruits MCT to the plasma membrane. However, the subcellular arrangement of MCT1 and MCT4 along the trophoblastic cell membrane was completely opposite of that in the human placenta. Although we cannot exactly explain the reversed localization of MCTs between human and murine placentas, it may be related to differences between humans and mice in the origin of lactate and its utilization by fetuses.

摘要

乳酸在作为替代能源底物方面发挥着重要作用,尤其是在葡萄糖利用率降低的情况下。质子偶联单羧酸转运体(MCTs)对于乳酸、酮体和其他单羧酸通过质膜的转运至关重要,并且可能有助于通过胎盘屏障的乳酸净转运。本研究检查了 MCT 在小鼠胎盘中的表达谱和亚细胞定位。对所有 MCT 亚型进行的原位杂交调查在妊娠第 11.5 天的胎盘上检测到 MCT1、MCT4 和 MCT9 以及 GLUT1 的强烈 mRNA 表达。与 GLUT1 mRNA 的持续强烈表达相反,MCT mRNA 的表达在妊娠末期强度降低。免疫组织化学显示,MCT1 和 MCT4 在两层合胞滋养层的母体侧和胎儿侧分别表现出极化定位。MCT 向质膜募集的 CD147 的存在支持 MCT 的膜定向定位。然而,MCT1 和 MCT4 沿滋养层细胞膜的亚细胞排列与人类胎盘完全相反。虽然我们无法准确解释人胎盘和鼠胎盘之间 MCT 的反向定位,但这可能与人与鼠之间胎儿乳酸的来源及其利用方式的差异有关。

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