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CL-L1 and CL-K1 Exhibit Widespread Tissue Distribution With High and Co-Localized Expression in Secretory Epithelia and Mucosa

机译:CL-L1和CL-K1表现出广泛的组织分布在分泌性上皮和粘膜中具有高和共定位表达

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摘要

Collectin liver 1 (CL-L1, alias collectin 10) and collectin kidney 1 (CL-K1, alias collectin 11) are oligomeric pattern recognition molecules associated with the complement system, and mutations in either of their genes may lead to deficiency and developmental defects. The two collectins are reportedly localized and synthesized in the liver, kidneys, and adrenals, and can be found in the circulation as heteromeric complexes (CL-LK), which upon binding to microbial high mannose-like glycoconjugates activates the complement system via the lectin activation pathway. The tissue distribution of homo- vs. heteromeric CL-L1 and -K1 complexes, the mechanism of heteromeric complex formation and in which tissues this occurs, is hitherto incompletely described. We have by immunohistochemistry using monoclonal antibodies addressed the precise cellular localization of the two collectins in the main human tissues. We find that the two collectins have widespread and almost identical tissue distribution with a high expression in epithelial cells in endo-/exocrine secretory tissues and mucosa. There is also accordance between localization of mRNA transcripts and detection of proteins, showing that local synthesis likely is responsible for peripheral localization and eventual formation of the CL-LK complexes. The functional implications of the high expression in endo-/exocrine secretory tissue and mucosa is unknown but might be associated with the activity of MASP-3, which has a similar pattern of expression and is known to potentiate the activity of the alternative complement activation pathway.
机译:肝收集素1(CL-L1,别名collectin 10)和肾脏收集素1(CL-K1,别名collectin 11)是与补体系统相关的寡聚模式识别分子,它们任一基因的突变均可能导致缺乏和发育缺陷。据报道这两个集合蛋白在肝脏,肾脏和肾上腺中定位和合成,并且可以在循环中以杂聚体复合物(CL-LK)的形式发现,其与微生物高甘露糖样糖结合物结合后通过凝集素激活补体系统。激活途径。迄今为止,对异构体CL-L1和-K1复合物的组织分布,异构体复合物形成的机理以及发生在其中的组织的描述还不完整。通过免疫组织化学,我们已经使用单克隆抗体解决了两个主要人类组织中集合蛋白的精确细胞定位。我们发现这两个collectin具有广泛和几乎相同的组织分布,在内分泌/外分泌分泌组织和粘膜的上皮细胞中具有高表达。 mRNA转录物的定位与蛋白质的检测之间也存在一致性,表明局部合成可能是CL-LK复合物的外围定位和最终形成的原因。在内分泌/外分泌分泌组织和粘膜中高表达的功能含义尚不清楚,但可能与M​​ASP-3的活性有关,MASP-3的表达模式相似,并且已知能增强替代补体激活途径的活性。

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