投稿指南
一、本刊要求作者有严谨的学风和朴实的文风,提倡互相尊重和自由讨论。凡采用他人学说,必须加注说明。 二、不要超过10000字为宜,精粹的短篇,尤为欢迎。 三、请作者将稿件(用WORD格式)发送到下面给出的征文信箱中。 四、凡来稿请作者自留底稿,恕不退稿。 五、为规范排版,请作者在上传修改稿时严格按以下要求: 1.论文要求有题名、摘要、关键词、作者姓名、作者工作单位(名称,省市邮编)等内容一份。 2.基金项目和作者简介按下列格式: 基金项目:项目名称(编号) 作者简介:姓名(出生年-),性别,民族(汉族可省略),籍贯,职称,学位,研究方向。 3.文章一般有引言部分和正文部分,正文部分用阿拉伯数字分级编号法,一般用两级。插图下方应注明图序和图名。表格应采用三线表,表格上方应注明表序和表名。 4.参考文献列出的一般应限于作者直接阅读过的、最主要的、发表在正式出版物上的文献。其他相关注释可用脚注在当页标注。参考文献的著录应执行国家标准GB7714-87的规定,采用顺序编码制。

骨骼肌肥大的核糖体生物发生机制及其运动适应(5)

来源:运动精品 【在线投稿】 栏目:期刊导读 时间:2021-01-20 12:41
作者:网站采编
关键词:
摘要:[3] CHAILLOU T. Ribosome specialization and its potential role in the control of protein translation and skeletal muscle size. J Appl ;2019; 127(2):599-607. [4] FIGUEIREDO VC, MCCARTHY JJ. Regulation

[3] CHAILLOU T. Ribosome specialization and its potential role in the control of protein translation and skeletal muscle size. J Appl ;2019; 127(2):599-607.

[4] FIGUEIREDO VC, MCCARTHY JJ. Regulation of ribosome biogenesis in skeletal muscle hypertrophy. Physiology (Bethesda). 2019; 34(1):30-42.

[5] FIGUEIREDO VC. Revisiting the roles of protein synthesis during skeletal muscle hypertrophy induced by exercise. Am J Physiol Regul Integr Comp Physiol. 2019;317(5):R709-R718.

[6] WEN Y, ALIMOV AP, MCCARTHY JJ. Ribosome biogenesis is necessary for skeletal muscle hypertrophy. Exerc Sport Sci Rev. 2016;44(3):110-115.

[7] VON WALDEN F. Ribosome biogenesis in skeletal muscle:coordination of transcription and translation. J Appl Physiol (1985).2019;127(2):591-598.

[8] VON WALDEN F, LIU C, AURIGEMMA N, et al. mTOR signaling regulates myotube hypertrophy by modulating protein synthesis, rDNA transcription, and chromatin remodeling. Am J Physiol Cell ; 311(4):C663-672.

[9] NADER GA, MCLOUGHLIN TJ, ESSER KA, et al. mTOR function in skeletal muscle hypertrophy: increased ribosomal RNA via cell cycle regulators. Am. J. Physiol. Cell Physiol. 2005; 289(6):C1457-1465.

[10] STEC MJ, KELLY NA, MANY GM, et al. Ribosome biogenesis may augment resistance training-induced myofiber hypertrophy and is required for myotube growth in vitro. Am. J. ; 310(8):E652-661.

[11] VON WALDEN F, CASAGRANDE V, OSTLUND FARRANTS AK, et loading induces the expression of a Pol I regulon at the onset of skeletal muscle hypertrophy. Am. J. Physiol. Cell ; 302(10):C1523-1530.

[12] MIYAZAKI M, MCCARTHY JJ, FEDELE MJ, et al. Early activation of mTORC1 signalling in response to mechanical overload is independent of phosphoinositide 3--kinase/Akt signalling. J Physiol 2011; 589(Pt 7):1831-1846.

[13] NADER GA, VON WALDEN F, LIU C, et al. Resistance exercise training modulates acute gene expression during human skeletal muscle hypertrophy. J Appl Physiol. 2014; 116(6):693-702.

[14] REIDY PT, BORACK MS, MARKOFSKI MM, et al. Post-absorptive muscle proteinturnover affects resistance training hypertrophy. Eur J Appl Physiol. 2017;117(5):853-866.

[15] NAKADA S, OGASAWARA R, KAWADA S, et al. Correlation between ribosome biogenesis and the magnitude of hypertrophy in overloadedskeletal muscle. PLoS One. 2016; 11(1):e0.

[16] MOBLEY CB, MUMFORD PW, KEPHART WC, et al. Aging in rats differentially affects markers of transcriptional and translational capacity in soleus and plantaris muscle. Front Physiol. 2017; 8:518.

[17] STEC MJ, MAYHEW DL, BAMMAN MM. The effects of age and resistance loading on skeletal muscle ribosome biogenesis. J Appl Physiol. 2015; 119(8):851-857.

[18] BROOK MS, WILKINSON DJ, MITCHELL WK, et al. Skeletal muscle hypertrophy adaptations predominate in the early stages of resistance exercise training, matching deuterium oxide-derived measures of muscle protein synthesis and mechanistic target of rapamycin complex 1 signaling. FASEB J. 2015; 29(11):4485-4496.

[19] 关尚一,张少生,卢健. mTOR/p70s6k通路与运动诱导的肌肉蛋白质合成[J].中国组织工程研究与临床康复,2009,13(24):4738-4741.

[20] IADEVAIA V, HUO Y, ZHANG Z, et al. Roles of the mammalian target of rapamycin, mTOR, in controlling ribosome biogenesis and protein synthesis. Biochem Soc Trans. 2012;40:168-172.

[21] MAYER C, ZHAO J, YUAN X, et al. MTOR-dependent activation of the transcription factor TIF-IA links rRNA synthesis to nutrient Dev. 2004; 18:423-434.

[22] TSANG CK, LIU H, ZHENG XF. MTOR binds to the promoters of RNA polymerase I- and III-transcribed genes. Cell Cycle. 2010;9:953-957.

[23] HANNAN KM, BRANDENBURGER Y, JENKINS A, et regulation of ribosomal gene transcription requires S6K1 and is mediated by phosphorylation of the carboxy-terminal activation domain of the nucleolar transcription factor UBF. Mol Cell Biol. 2003;23:8862-8877.

[24] KANTIDAKIS T, RAMSBOTTOM BA, BIRCH JL, et al. MTOR associates with TFIIIC, is found at tRNA and 5S rRNA genes, and targets their repressor Maf1. Proc Natl Acad Sci USA. 2010;107:-.

[25] STEFANOVSKY VY, LANGLOIS F, BAZETT-JONES D, et al. ERK modulates DNA bending and enhancesome structure by phosphorylating HMG1-boxes 1 and 2 of the RNA polymerase I transcription factor UBF. Biochemistry. 2006;45:3626-3634.

[26] ZHAO J, YUAN X, FR?DIN M, et al. ERK-dependent phosphorylation of the transcription initiation factor TIF-IA is required for RNA polymerase I transcription and cell growth. Mol Cell. 2003; 11:405-413.

[27] VOIT R, GRUMMT I. Phosphorylation of UBF at serine 388 is required for interaction with RNA polymerase I and activation of rDNA transcription. Proc Natl Acad Sci USA. 2001;98: -.

[28] VOIT R, HOFFMANN M, GRUMMT I. Phosphorylation by G1-specific cdk-cyclin complexes activates the nucleolar transcription factor UBF.EMBO J. 1999; 18:1891-1899.

[29] ARABI A, WU S, RIDDERSTR?LE K, et al. c-Myc associates with ribosomal DNA and activates RNA polymerase I transcription. Nat Cell Biol. 2005; 7:303-310.

文章来源:《运动精品》 网址: http://www.ydjpzz.cn/qikandaodu/2021/0120/1000.html



上一篇:鸢尾素通过整合素αV受体对衰竭心脏的保护作用
下一篇:游泳运动在全民健身中的作用探析

运动精品投稿 | 运动精品编辑部| 运动精品版面费 | 运动精品论文发表 | 运动精品最新目录
Copyright © 2018 《运动精品》杂志社 版权所有
投稿电话: 投稿邮箱: