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核糖核酸酶 1 缺乏症在小鼠中的表型。

Phenotype of ribonuclease 1 deficiency in mice.

机构信息

Graduate Program in Molecular and Cellular Pharmacology, University of Wisconsin-Madison, Madison, Wisconsin 53706, USA.

Department of Chemistry, Massachusetts Institute of Technology, Cambridge, Massachusetts 02139, USA.

出版信息

RNA. 2019 Aug;25(8):921-934. doi: 10.1261/rna.070433.119. Epub 2019 May 3.

Abstract

Biological roles for extracellular RNA (eRNA) have become apparent. For example, eRNA can induce contact activation in blood via activation of the plasma proteases factor XII (FXII) and factor XI (FXI). We sought to reveal the biological role of the secretory enzyme ribonuclease 1 (RNase 1) in an organismal context by generating and analyzing RNase 1 knockout () mice. We found that these mice are viable, healthy, and fertile, though larger than mice. plasma contains more RNA than does the plasma of mice. Moreover, the plasma of mice clots more rapidly than does wild-type plasma. This phenotype appeared to be due to increased levels of the active form of FXII (FXIIa) in the plasma of mice compared to mice, and is consistent with the known effects of eRNA on FXII activation. The apparent activity of FXI in the plasma of mice was 1000-fold higher when measured in an assay triggered by a low concentration of tissue factor than in assays based on recalcification, consistent with eRNA enhancing FXI activation by thrombin. These findings suggest that one of the physiological functions of RNase 1 is to degrade eRNA in blood plasma. Loss of this function facilitates FXII and FXI activation, which could have effects on inflammation and blood coagulation. We anticipate that mice will be a useful tool for evaluating other hypotheses about the functions of RNase 1 and of eRNA in vivo.

摘要

细胞外 RNA(eRNA)的生物学作用已经变得明显。例如,eRNA 可以通过激活血浆蛋白酶因子 XII(FXII)和因子 XI(FXI)来诱导血液中的接触激活。我们试图通过生成和分析核糖核酸酶 1(RNase 1)敲除()小鼠来揭示分泌酶 RNase 1 在机体中的生物学作用。我们发现这些小鼠是有活力的、健康的和有生育能力的,尽管比小鼠大。小鼠的血浆比小鼠的血浆含有更多的 RNA。此外,小鼠的血浆凝结速度比野生型血浆快。这种表型似乎是由于与小鼠相比,小鼠血浆中 FXII(FXIIa)的活性形式水平升高所致,这与 eRNA 对 FXII 激活的已知作用一致。当在以低浓度组织因子触发的测定中测量时,小鼠血浆中 FXI 的明显活性比基于再钙化的测定高 1000 倍,这与 eRNA 增强凝血酶对 FXI 的激活一致。这些发现表明,RNase 1 的生理功能之一是降解血浆中的 eRNA。丧失这种功能会促进 FXII 和 FXI 的激活,这可能对炎症和血液凝固产生影响。我们预计,小鼠将是评估 RNase 1 和 eRNA 在体内功能的其他假说的有用工具。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f327/6633200/4fefeb54db97/921f01.jpg

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