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牛胰核糖核酸酶 A 对抗菌肽 HNP1 和 LL-37 活性的增强作用。

Enhancement of the activity of the antimicrobial peptides HNP1 and LL-37 by bovine pancreatic ribonuclease A.

机构信息

School of Medicine Institute of Human Virology, University of Maryland, Baltimore, Baltimore, Maryland, 21201, USA.

出版信息

F1000Res. 2023 Mar 13;11:933. doi: 10.12688/f1000research.123044.3. eCollection 2022.

Abstract

HNP1, LL-37, and HBD1 are antimicrobial against Escherichia coli ATCC 25922 at the standard inoculum but less active at higher inocula.   The virtual colony count (VCC) microbiological assay was adapted for high inocula and the addition of yeast tRNA and bovine pancreatic ribonuclease A (RNase).  96-well plates were read for 12 hours in a Tecan Infinite M1000 plate reader and photographed under 10x magnification.    Adding tRNA 1:1 wt/wt to HNP1 at the standard inoculum almost completely abrogated activity.  Adding RNase 1:1 to HNP1 at the standard inoculum of 5x10 CFU/mL did not enhance activity.  Increasing the inoculum to 6.25x10 CFU/mL almost abrogated HNP1 activity.  However, adding RNase 25:1 to HNP1 enhanced activity at the highest tested concentration of HNP1.  Adding both tRNA and RNase resulted in enhanced activity, indicating that the enhancement effect of RNase overwhelms the inhibiting effect of tRNA when both are present.  HBD1 activity at the standard inoculum was almost completely abrogated by the addition of tRNA, but LL-37 activity was only slightly inhibited by tRNA.  At the high inoculum, LL-37 activity was enhanced by RNase.  HBD1 activity was not enhanced by RNase.  RNase was not antimicrobial in the absence of antimicrobial peptides.  Cell clumps were observed at the high inoculum in the presence of all three antimicrobial peptides and at the standard inoculum in the presence of HNP1+tRNA and HBD1+tRNA.    Antimicrobial peptide-ribonuclease combinations have the potential to be active against high cell concentrations, conditions where the antimicrobial agent alone is relatively ineffective.

摘要

HNP1、LL-37 和 HBD1 对标准接种物的大肠杆菌 ATCC 25922 具有抗菌作用,但在较高接种物时活性较低。虚拟菌落计数 (VCC) 微生物测定法适用于高接种物和添加酵母 tRNA 和牛胰腺核糖核酸酶 A (RNase)。在 Tecan Infinite M1000 平板读数仪中读取 96 孔板 12 小时,并在 10x 放大倍数下拍照。在标准接种物中添加 tRNA 1:1wt/wt 几乎完全消除了 HNP1 的活性。在标准接种物 5x10 CFU/mL 的 HNP1 中添加 RNase 1:1 不会增强活性。将接种物增加到 6.25x10 CFU/mL 几乎消除了 HNP1 的活性。然而,在 HNP1 测试的最高浓度下添加 25:1 的 RNase 增强了其活性。添加 tRNA 和 RNase 均可增强活性,表明当两者都存在时,RNase 的增强作用超过了 tRNA 的抑制作用。在标准接种物中添加 tRNA 几乎完全消除了 HBD1 的活性,但 tRNA 对 LL-37 的活性只有轻微抑制。在高接种物中,RNase 增强了 LL-37 的活性。RNase 未增强 HBD1 的活性。在没有抗菌肽的情况下,RNase 没有抗菌作用。在存在所有三种抗菌肽的高接种物中观察到细胞团块,在存在 HNP1+tRNA 和 HBD1+tRNA 的标准接种物中也观察到细胞团块。抗菌肽-核糖核酸酶组合具有在高细胞浓度下发挥作用的潜力,在这种情况下,单独使用抗菌剂的效果相对较差。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aa9c/10285418/0095d41fd22d/f1000research-11-145427-g0000.jpg

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