Zhang Lu, Li Haisheng, Yao Zhihui, Yang Sisi, He Weifeng, Wu Jun, Luo Gaoxing
Institute of Burn Research, Southwest Hospital, State Key Laboratory of Trauma, Burns and Combined Injury, the Third Military Medical University, Chongqing 400038, China.
Zhonghua Shao Shang Za Zhi. 2016 Apr;32(4):208-15. doi: 10.3760/cma.j.issn.1009-2587.2016.04.005.
To explore the interaction between P311 and transforming growth factor beta 1 (TGF-β1) in murine fibroblasts and its effect on the function of fibroblasts.
Skin fibroblasts obtained from five neonatal P311 wild-type C57BL/6 mice and P311 gene knock-out C57BL/6 mice were cultured. The second passage of fibroblasts were used in the following experiments. All experiments were repeated for 3 times. (1) The fibroblasts of P311 wild-type mice were divided into blank control group and P311 over-expression group according to the random number table (the same grouping method below), with 36 wells in each group. Fibroblasts in blank control group were transfected with 10 μL control vector, and fibroblasts in P311 over-expression group were transfected with equal efficiency P311 expression adenovirus vector. After being cultured for 48 hours, the mRNA expression level of P311, and the mRNA and protein expression levels of TGF-β1, α-smooth muscle actin (α-SMA), and collagen type I of fibroblasts in both groups were determined with real-time fluorescent quantitative RT-PCR and Western blotting (the same detection methods below), respectively. (2) After cultured reaching the cell density of 80%-90%, the mRNA and protein expression levels of TGF-β1, α-SMA, and collagen type I of the fibroblasts of P311 wild-type mice and P311 gene knock-out mice, with 4 flasks in each type of fibroblasts, were determined. (3) The fibroblasts of P311 wild-type mice were divided into blank control group and 5, 10, 15, 20, and 25 ng/mL TGF-β1 groups after being starved treatment with DMEM medium containing 1% FBS for 3 hours, with 2 flasks in each group. Fibroblasts in blank control group were routinely cultured, while fibroblasts in the latter five groups were treated with 5, 10, 15, 20, and 25 ng/mL TGF-β1, respectively. After being cultured for 48 hours, the mRNA expression levels of P311 in fibroblasts of the six groups were determined. Another fibroblasts of P311 wild-type mice were divided into blank control group and 10 ng/mL TGF-β1 group, with 6 wells in each group, and the protein expression levels of P311 in both groups were determined by immunofluorescence staining. (4) The fibroblasts of P311 wild-type mice were divided into blank control group and 10 ng/mL TGF-β1 group after being starved treatment as above, with 2 flasks in each group, and fibroblasts in blank control group were routinely cultured, while fibroblasts in the latter group were treated with 10 ng/mL TGF-β1. After being cultured for 48 hours, the mRNA and protein expression levels of α-SMA and collagen type Ⅰ were determined. The fibroblasts of P311 gene knock-out mice were grouped and treated as above, and the mRNA and protein expression levels of α-SMA and collagen type I were determined. Data were processed with one-way analysis of variance and t test.
(1) The mRNA expression level of P311 of fibroblasts in P311 over-expression group was increased nearly 300 000-fold compared with that in blank control group (t=9.942, P<0.001). The mRNA expression levels of TGF-β1, α-SMA, and collagen type I of fibroblasts in P311 over-expression group, and the protein expression levels of pro-TGF-β1, activated TGF-β1, α-SMA, and collagen type I of fibroblasts in P311 over-expression group were significantly higher than those in blank control group (with t values from 8.192 to 49.090, P values below 0.01). (2) The mRNA expression levels of TGF-β1, α-SMA, and collagen type I in fibroblasts of P311gene knock-out mice were significantly lower than those in fibroblasts of P311 wild-type mice (with t values from 8.157 to 22.270, P values below 0.01). The protein expression levels of pro-TGF-β1, α-SMA, and collagen type I in fibroblasts of P311 gene knock-out mice were significantly lower than those in fibroblasts of P311 wild-type mice (with t values from 2.995 to 12.600, P<0.05 or P<0.01), and the protein expression levels of active TGF-β1 were similar in two types of fibroblasts (t=1.070, P>0.05). (3) The mRNA expression levels of P311 of fibroblasts in blank control group and 5, 10, 15, 20 and 25 ng/mL TGF-β1 groups were 1.28 ± 0.44, 3.61 ± 0.91, 6.64 ± 0.92, 6.58 ± 1.04, 1.79 ± 0.31, 0.16 ± 0.06, respectively. Compared to the mRNA expression level of P311 of fibroblasts in the blank control group, the mRNA expression levels of P311 of fibroblasts in 5 and 20 ng/mL TGF-β1 groups were similar (with t values respectively 2.302 and 0.955, P values above 0.05), while they were significantly higher in 10 and 15 ng/mL TGF-β1 groups (with t values respectively 5.630 and 4.710, P values below 0.001), and they were significantly lower in 25 ng/mL TGF-β1 group (t=2.509, P<0.01). The protein expression level of P311 of fibroblasts in 10 ng/mL group was higher than that in blank control group. (4) The mRNA and protein expression levels of α-SMA and collagen type I of fibroblasts of P311 wild-type mice in 10 ng/mL TGF-β1 group were significantly higher than those in blank control group (with t values from 3.523 to 14.290, P<0.05 or P<0.01). The mRNA and protein expression levels of α-SMA and collagen type I of fibroblasts of P311 gene knock-out mice in 10 ng/mL TGF-β1 group were significantly higher than those in blank control group (with t values from 4.895 to 14.870, P<0.05 or P<0.01).
The interaction between P311 and TGF-β1 in murine fibroblasts exists and it may enhance the differentiation of fibroblasts in combination.
探讨P311与转化生长因子β1(TGF-β1)在小鼠成纤维细胞中的相互作用及其对成纤维细胞功能的影响。
培养从5只新生P311野生型C57BL/6小鼠和P311基因敲除C57BL/6小鼠获取的皮肤成纤维细胞。使用第二代成纤维细胞进行以下实验。所有实验重复3次。(1)将P311野生型小鼠的成纤维细胞按随机数字表分为空白对照组和P311过表达组(以下分组方法相同),每组36孔。空白对照组的成纤维细胞用10 μL对照载体转染,P311过表达组的成纤维细胞用等效率的P311表达腺病毒载体转染。培养48小时后,分别用实时荧光定量RT-PCR和蛋白质免疫印迹法(以下检测方法相同)检测两组成纤维细胞中P311的mRNA表达水平,以及TGF-β1、α平滑肌肌动蛋白(α-SMA)和I型胶原蛋白的mRNA和蛋白质表达水平。(2)培养至细胞密度达到80%-90%后,检测P311野生型小鼠和成纤维细胞P311基因敲除小鼠的成纤维细胞中TGF-β1、α-SMA和I型胶原蛋白的mRNA和蛋白质表达水平,每种成纤维细胞各4瓶。(3)用含1%胎牛血清的DMEM培养基饥饿处理P311野生型小鼠的成纤维细胞3小时后,分为空白对照组和5、10、15、20、25 ng/mL TGF-β1组,每组2瓶。空白对照组的成纤维细胞常规培养,后五组的成纤维细胞分别用5、10、15、20、25 ng/mL TGF-β1处理。培养48小时后,检测六组成纤维细胞中P311的mRNA表达水平。另取P311野生型小鼠的成纤维细胞分为空白对照组和10 ng/mL TGF-β1组,每组6孔,用免疫荧光染色法检测两组中P311的蛋白质表达水平。(4)按上述方法饥饿处理P311野生型小鼠的成纤维细胞后,分为空白对照组和10 ng/mL TGF-β1组,每组2瓶,空白对照组的成纤维细胞常规培养,后一组的成纤维细胞用10 ng/mL TGF-β1处理。培养48小时后,检测α-SMA和I型胶原蛋白的mRNA和蛋白质表达水平。对P311基因敲除小鼠的成纤维细胞进行分组并按上述方法处理,检测α-SMA和I型胶原蛋白的mRNA和蛋白质表达水平。数据采用单因素方差分析和t检验进行处理。
(1)P311过表达组成纤维细胞中P311的mRNA表达水平较空白对照组升高近300 000倍(t=9.942,P<0.001)。P311过表达组成纤维细胞中TGF-β1、α-SMA和I型胶原蛋白的mRNA表达水平,以及P311过表达组成纤维细胞中前体TGF-β1、活化TGF-β1、α-SMA和I型胶原蛋白的蛋白质表达水平均显著高于空白对照组(t值为8.192至49.090,P值均小于0.01)。(2)P311基因敲除小鼠成纤维细胞中TGF-β1、α-SMA和I型胶原蛋白的mRNA表达水平显著低于P311野生型小鼠成纤维细胞(t值为8.157至22.270,P值均小于0.01)。P311基因敲除小鼠成纤维细胞中前体TGF-β1、α-SMA和I型胶原蛋白的蛋白质表达水平显著低于P311野生型小鼠成纤维细胞(t值为2.995至12.600,P<0.05或P<0.01),两种成纤维细胞中活性TGF-β1蛋白表达水平相似(t=1.070,P>0.05)。(3)空白对照组及5、10、15、20、25 ng/mL TGF-β1组成纤维细胞中P311的mRNA表达水平分别为1.28±0.44、3.61±0.91、6.64±0.92、6.58±1.04、1.79±0.31、0.16±0.06。与空白对照组成纤维细胞中P311的mRNA表达水平相比,5和20 ng/mL TGF-β1组成纤维细胞中P311的mRNA表达水平相似(t值分别为2.302和0.955,P值均大于0.05),而10和15 ng/mL TGF-β1组显著升高(t值分别为5.630和4.710,P值均小于0.001),25 ng/mL TGF-β1组显著降低(t=2.509,P<0.01)。10 ng/mL组的成纤维细胞中P311的蛋白质表达水平高于空白对照组。(4)10 ng/mL TGF-β1组P311野生型小鼠成纤维细胞中α-SMA和I型胶原蛋白的mRNA和蛋白质表达水平显著高于空白对照组(t值为3.523至14.290,P<0.05或P<0.01)。10 ng/mL TGF-β1组P311基因敲除小鼠成纤维细胞中α-SMA和I型胶原蛋白mRNA和蛋白质表达水平显著高于空白对照组(t值为4.895至14.870,P<0.05或P<0.01)。
P311与TGF-β1在小鼠成纤维细胞中存在相互作用,二者可能协同增强成纤维细胞的分化。