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mTORC1 信号相关蛋白合成在猪乳腺中受到局部可用蛋氨酸调控,这取决于蛋氨酸来源。

mTORC1 signaling-associated protein synthesis in porcine mammary glands was regulated by the local available methionine depending on methionine sources.

机构信息

Key Laboratory for Animal Disease Resistance Nutrition of the Ministry of Education, Animal Nutrition Institute, Sichuan Agricultural University, Chengdu, 611130, People's Republic of China.

Adisseo France S.A.S, CERN, Commentry, France.

出版信息

Amino Acids. 2018 Jan;50(1):105-115. doi: 10.1007/s00726-017-2496-0. Epub 2017 Oct 5.

Abstract

Mechanistic target of rapamycin complex1 (mTORC1) activation and protein synthesis varied with methionine sources; however, the related mechanisms are largely unknown. Porcine mammary epithelial cells (PMEC) and mammary tissue slices (MTS) were used to test whether methionine precursors differ in providing the available methionine and thus differ in mTORC1 signaling-associated protein synthesis. PMEC with methionine deprivation for 8 h and MTS from lactating sows were cultured for 24 and 2 h, respectively, with treatment media without methionine (negative control, NC) or supplemented with 0.6 mM (for PMEC) and 0.1 mM (for MTS) of L-methionine (L-MET), D-methionine (D-MET), DL-2-hydroxy-4-(methylthio) butyric acid (HMTBA), or keto-methyl(thio)butanoic acid (KMB). The measurements included: phosphorylation of mTORC1 signaling, fractional protein synthesis rate (FSR), amino acids (AA) profile, and enzyme activities. Compared with the NC treatment, activated mTORC1 signaling as manifested by higher (P < 0.05) protein abundance of phosphorylated-S6 Kinase 1 (P-S6K1) and phosphorylated-4E-binding Protein 1 (P-4E-BP1) in PMEC and MTS, and increased protein synthesis as indicated by higher (P < 0.05) FSR in MTS occurred in L-MET and HMTBA treatments rather than in D-MET treatment. Compared with the NC treatment, methionine concentration and ratio of methionine to lysine in MTS increased (P < 0.05) in L-MET and HMTBA treatments but not in D-MET treatment, and activities of enzymes responsible for conversion of D-MET and HMTBA to keto-methionine in mammary tissues were about 10 and 50%, respectively, of that in liver. Taken together, mTORC1 signaling-associated protein synthesis in porcine mammary glands was regulated by the local available methionine depending on methionine sources.

摘要

雷帕霉素靶蛋白复合物 1(mTORC1)的激活和蛋白质合成随蛋氨酸来源而变化;然而,相关机制在很大程度上尚不清楚。使用猪乳腺上皮细胞(PMEC)和乳腺组织切片(MTS)来测试蛋氨酸前体是否在提供可用蛋氨酸方面存在差异,从而在 mTORC1 信号相关的蛋白质合成方面存在差异。用无蛋氨酸培养基(阴性对照,NC)培养 8 h 缺乏蛋氨酸的 PMEC 和分别培养 24 和 2 h 的泌乳母猪的 MTS,或用 0.6 mM(用于 PMEC)和 0.1 mM(用于 MTS)的 L-蛋氨酸(L-MET)、D-蛋氨酸(D-MET)、DL-2-羟基-4-(甲基硫代)丁酸(HMTBA)或酮-甲基(硫代)丁酸(KMB)补充培养基处理。测量包括:mTORC1 信号的磷酸化、蛋白质合成率(FSR)的分数、氨基酸(AA)谱和酶活性。与 NC 处理相比,PMEC 和 MTS 中磷酸化 S6 激酶 1(P-S6K1)和磷酸化 4E 结合蛋白 1(P-4E-BP1)的蛋白丰度更高(P<0.05),表现出激活的 mTORC1 信号,MTS 中的蛋白质合成增加(P<0.05),表明 FSR 升高,这是在 L-MET 和 HMTBA 处理中发生的,而不是在 D-MET 处理中发生的。与 NC 处理相比,MTS 中的蛋氨酸浓度和蛋氨酸与赖氨酸的比值在 L-MET 和 HMTBA 处理中增加(P<0.05),但在 D-MET 处理中没有增加,并且负责将 D-MET 和 HMTBA 转化为酮蛋氨酸的酶在乳腺组织中的活性分别约为肝脏中的 10%和 50%。总之,猪乳腺中 mTORC1 信号相关的蛋白质合成受局部可用蛋氨酸的调节,这取决于蛋氨酸的来源。

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