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Sphingosine-1-phosphate lyase expression in embryonic and adult murine tissues

机译:鞘氨醇-1-磷酸裂合酶在胚胎和成年鼠组织中的表达

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摘要

Sphingosine-1-phosphate (S1P) is a bioactive sphingolipid involved in immunity, inflammation, angiogenesis, and cancer. S1P lyase (SPL) is the essential enzyme responsible for S1P degradation. SPL augments apoptosis and is down-regulated in cancer. SPL generates a S1P chemical gradient that promotes lymphocyte trafficking and as such is being targeted to treat autoimmune diseases. Despite growing interest in SPL as a disease marker, antioncogene, and pharmacological target, no comprehensive characterization of SPL expression in mammalian tissues has been reported. We investigated SPL expression in developing and adult mouse tissues by generating and characterizing a β-galactosidase-SPL reporter mouse combined with immunohistochemistry, immunoblotting, and enzyme assays. SPL was expressed in thymic and splenic stromal cells, splenocytes, Peyer's Patches, colonic lymphoid aggregates, circulating T and B lymphocytes, granulocytes, and monocytes, with lowest expression in thymocytes. SPL was highly expressed within the CNS, including arachnoid lining cells, spinal cord, choroid plexus, trigeminal nerve ganglion, and specific neurons of the olfactory bulb, cerebral cortex, midbrain, hindbrain, and cerebellum. Expression was detected in brown adipose tissue, female gonads, adrenal cortex, bladder epithelium, Harderian and preputial glands, and hair follicles. This unique expression pattern suggests SPL has many undiscovered physiological functions apart from its role in immunity.
机译:1-磷酸鞘氨醇(S1P)是一种生物活性鞘脂,涉及免疫力,炎症,血管生成和癌症。 S1P裂解酶(SPL)是负责S1P降解的必需酶。 SPL增强细胞凋亡,并在癌症中下调。 SPL产生S1P化学梯度,促进淋巴细胞运输,因此被靶向治疗自身免疫性疾病。尽管人们越来越关注SPL作为疾病标志物,抗癌基因和药理学靶标,但尚未报道哺乳动物组织中SPL表达的全面特征。我们通过结合免疫组织化学,免疫印迹和酶法测定和表征β-半乳糖苷酶-SPL报告基因小鼠来研究发育中和成年小鼠组织中的SPL表达。 SPL在胸腺和脾基质细胞,脾细胞,Peyer's Patches,结肠淋巴样聚集物,循环的T和B淋巴细胞,粒细胞和单核细胞中表达,在胸腺细胞中表达最低。 SPL在CNS中高度表达,包括蛛网膜内衬细胞,脊髓,脉络膜丛,三叉神经神经节和嗅球,大脑皮层,中脑,后脑和小脑的特定神经元。在棕色脂肪组织,雌性腺,肾上腺皮质,膀胱上皮,哈德氏囊和皮膜腺以及毛囊中检测到表达。这种独特的表达模式表明,SPL除具有免疫功能外,还具有许多尚未发现的生理功能。

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