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Molecular characterization of a Trichinella spiralis aspartic protease and its facilitation role in larval invasion of host intestinal epithelial cells

机译:Trichinella Spiralis天冬氨酸蛋白酶的分子表征及其在宿主肠上皮细胞幼虫侵袭中的促进作用

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摘要

BackgroundT. spiralis aspartic protease has been identified in excretion/secretion (ES) proteins, but its roles in larval invasion are unclear. The aim of this study was to characterize T. spiralis aspartic protease-2 (TsASP2) and assess its roles in T. spiralis invasion into intestinal epithelial cells (IECs) using RNAi.Methodology/principal findingsRecombinant TsASP2 (rTsASP2) was expressed and purified. The native TsASP2 of 43 kDa was recognized by anti-rTsASP2 serum in all worm stages except newborn larvae (NBL), and qPCR indicated that TsASP2 transcription was highest at the stage of intestinal infective larvae (IIL). IFA results confirmed that TsASP2 was located in the hindgut, midgut and muscle cells of muscle larvae (ML) and IIL and intrauterine embryos of the female adult worm (AW), but not in NBL. rTsASP2 cleaved several host proteins (human hemoglobin (Hb), mouse Hb, collagen and IgM). The proteolytic activity of rTsASP2 was host-specific, as it hydrolyzed mouse Hb more efficiently than human Hb. The enzymatic activity of rTsASP2 was significantly inhibited by pepstatin A. The expression levels of TsASP2 mRNA and protein were significantly suppressed by RNAi with 5 μM TsASP2-specific siRNA. Native aspartic protease activity in ML crude proteins was reduced to 54.82% after transfection with siRNA. Larval invasion of IECs was promoted by rTsASP2 and inhibited by anti-rTsASP2 serum and siRNA. Furthermore, cell monolayer damage due to larval invasion was obviously alleviated when siRNA-treated larvae were used. The adult worm burden, length of adult worms and female fecundity were clearly reduced in mice challenged using siRNA-treated ML relative to the PBS group.ConclusionsrTsASP2 possesses the enzymatic activity of native aspartic protease and facilitates T. spiralis invasion of host IECs.
机译:BackgroundT。旋毛虫天冬氨酸蛋白酶已排泄/分泌(ES)的蛋白质已经确定,但其幼虫侵袭的作用尚不清楚。本研究的目的是表征旋毛虫天冬氨酸蛋白酶-2(TsASP2)并评估其在旋毛虫入侵作用到使用RNAi.Methodology肠上皮细胞(的IEC)/主findingsRecombinant TsASP2(rTsASP2),表达并纯化。 43 kDa的的天然TsASP2通过抗血清rTsASP2除了新生幼虫(NBL)所有蠕虫阶段认可,和qPCR表明TsASP2转录最高,为肠感染性幼虫(IIL)的阶段。 IFA结果证实,TsASP2位于后肠,肠和肌肉幼虫(ML)和IIL和雌成虫(AW)的宫内胚胎的肌肉细胞,但不是在NBL。 rTsASP2裂解几个宿主蛋白质(人血红蛋白(Hb),小鼠HB,胶原和IgM)。 rTsASP2的蛋白水解活性是宿主特异性的,因为它比人HB更有效地水解小鼠HB。 rTsASP2的酶活性通过胃蛋白酶抑制剂A TsASP2 mRNA和蛋白的表达水平显著通过RNAi用5μMTsASP2特异性siRNA抑制被显著抑制。在ML粗蛋白质天然天冬氨酸蛋白酶活性用siRNA转染后降低至54.82%。的IEC的幼虫侵入被rTsASP2推广和抗血清rTsASP2和siRNA抑制。此外,当siRNA处理的幼虫使用,由于幼虫侵袭细胞单层损伤明显减轻。成虫负担,成虫和女性繁殖力长度在小鼠中明显降低攻击使用siRNA处理的ML相对于PBS group.ConclusionsrTsASP2具有天然天冬氨酸蛋白酶的酶活性,并促进旋毛虫主机的IEC的入侵。

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