[1] Gleason C B, White R R.Beef species-ruminant nutrition cactus beef symposium: A role for beef cattle in sustainable u.S. Food production1[J]. J Anim Sci, 2019, 97(9):4010-4020. [2] White R R, Hall M B.Nutritional and greenhouse gas impacts of removing animals from us agriculture[J]. Proc Natl Acad Sci U S A, 2017, 114(48):301-308. [3] 王佳佳, 邓源喜, 王丹丹, 等. 牛肉的营养价值及牛肉嫩化技术的研究进展[J]. 肉类工业, 2019, 461(9):55-58. [4] Relaix F, Zammit P S.Satellite cells are essential for skeletal muscle regeneration: The cell on the edge returns centre stage[J]. Development, 2012, 139(16):2845-2856. [5] Millay D P.Regulation of the myoblast fusion reaction for muscle development, regeneration, and adaptations[J]. Experimental Cell Research, 2022, 415(2):113-134. [6] Ng D C H, Ho U Y, Grounds M D. Cilia, centrosomes and skeletal muscle[J]. International Journal of Molecular Sciences, 2021, 22(17):9605. [7] Zhao L, Huang Y,Du M.Farm animals for studying muscle development and metabolism: Dual purposes for animal production and human health[J]. Animal Frontiers : the Review Magazine of Animal Agriculture, 2019, 9(3):21-27. [8] Bentzinger C F, Wang Y X, Rudnicki M A.Building muscle: Molecular regulation of myogenesis[J]. Cold Spring Harbor Perspectives Biology, 2012, 4(2):a008342. [9] Buckingham M, Rigby P W J. Gene regulatory networks and transcriptional mechanisms that control myogenesis[J]. Developmental Cell, 2014, 28(3):225-238. [10] Mohammadabadi M, Bordbar F, Jensen J, et al.Key genes regulating skeletal muscle development and growth in farm animals[J]. Animals(Basel), 2021, 11(3):835. [11] Khoury K, Barbar E, Ainmelk Y, et al.Thirty-eight-year follow-up of two sibling lipoid congenital adrenal hyperplasia patients due to homozygous steroidogenic acute regulatory (stard1) protein mutation. Molecular structure and modeling of the stard1 l275p mutation[J]. Front Neurosci, 2016, 10(21):527. [12] Anuka E, Gal M, Stocco DM, et al.Expression and roles of steroidogenic acute regulatory (star) protein in 'non-classical', extra-adrenal and extra-gonadal cells and tissues[J]. Molecular and Cellular Endocrinology, 2013, 371(2):47-61. [13] Galano M, Li Y, Li L, et al.Role of constitutive star in leydig cells[J]. Int J Mol Sci, 2021, 22(4):2021-2025. [14] Garcia-Ruiz C, Conde de la Rosa L, Ribas V, et al. Mitochondrial cholesterol and cancer[J]. Seminars in Cancer Biology, 2021, 73(2):76-85. [15] Dinh Cat A N, Friederich-Persson M, White A, et al. Adipocytes, aldosterone and obesity-related hypertension[J]. Journal of Molecular Endocrinology, 2016, 57(1):7-21. [16] Qiu Y, Sui X, Zhan Y, et al.Steroidogenic acute regulatory protein (star) overexpression attenuates hfd-induced hepatic steatosis and insulin resistance[J]. Biochim Biophys Acta Mol Basis Dis, 2017, 1863(4):978-990. [17] Arenas F, Castro F, Nunez S, et al.Stard1 and npc1 expression as pathological markers associated with astrogliosis in post-mortem brains from patients with alzheimer's disease and down syndrome[J]. Aging (Albany NY), 2020, 12(1):571-592. [18] Razin T, Melamed-Book N, Argaman J, et al.Interleukin-1alpha dependent survival of cardiac fibroblasts is associated with star/stard1 expression and improved cardiac remodeling and function after myocardial infarction[J]. J Mol Cell Cardiol, 2021, 155(10):125-137. [19] Fujiki J, Maeda N, Sato M, et al.Corticosterone biosynthesis in mouse clonal myoblastic c2c12 cells[J]. Steroids, 2018, 138(7):64-71. [20] Anuka E, Yivgi-Ohana N, Eimerl S, et al.Infarct-induced steroidogenic acute regulatory protein: A survival role in cardiac fibroblasts[J]. Mol Endocrinol, 2013, 27(9):1502-1517. [21] Lavigne P, Najmanivich R, Lehoux J G.Mammalian star-related lipid transfer (start) domains with specificity for cholesterol: Structural conservation and mechanism of reversible binding[J]. Subcell Biochem, 2010, 51(10):425-437. [22] Horibata Y, Mitsuhashi S, Shimizu H, et al.The phosphatidylcholine transfer protein stard7 is important for myogenic differentiation in mouse myoblast c2c12 cells and human primary skeletal myoblasts[J]. Scientific Reports, 2020, 10(1):2845. [23] 王亚宁. Mef2a 对秦川牛骨骼肌成肌细胞增殖和分化的调控作用及机理研究[D]. 西安:西北农林科技大学, 2019. [24] Qiu Y, Sui X, Cao S, et al.Steroidogenic acute regulatory protein (star) overexpression reduces inflammation and insulin resistance in obese mice[J]. Journal of Cellular Biochemistry, 2017, 118(11):3932-3942. [25] 张俊杰, 李菁, 赵瑞阳, 等. 白斑狗鱼star基因克隆及其表达分析[J]. 南方农业学报, 2021, 52(11):3093-3101. [26] 欧阳宏佳, 孙敬帅, 江丹莉, 等. 水禽star基因克隆、表达及其对睾丸发育的影响[J]. 畜牧兽医学报, 2020, 51(12):3013-3022. [27] Di-Luoffo M, Daems C, Bergeron F, et al.Novel targets for the transcription factors mef2 in ma-10 leydig cells[J]. Biol Reprod, 2015, 93(1):9. [28] Tsuchiya Y, Kitajima Y, Masumoto H, et al.Damaged myofiber-derived metabolic enzymes act as activators of muscle satellite cells[J]. Stem Cell Reports, 2020, 15(4):926-940. [29] Miller W L.Steroidogenic acute regulatory protein (star), a novel mitochondrial cholesterol transporter[J]. Biochimica Et Biophysica Acta, 2007, 1771(6):663-676. [30] Ikonen E.Cellular cholesterol trafficking and compartmentalization[J]. Nat Rev Mol Cell Biol, 2008, 9(2):125-138. [31] Kulig W, Cwiklik L, Jurkiewicz P, et al.Cholesterol oxidation products and their biological importance[J]. Chem Phys Lipids, 2016, 199(9):144-160. [32] Lu Z, Huang L, Li Y, et al.Fine-tuning of cholesterol homeostasis controls erythroid differentiation[J]. Adv Sci (Weinh), 2022, 9(2):2102669. [33] Mutemberezi V, Guillemot-Legris O,Muccioli G G.Oxysterols: From cholesterol metabolites to key mediators[J]. Prog Lipid Res, 2016, 64(10):152-169. [34] Tompkins Y H, Su S, Velleman S G, et al.Effects of 20(s)-hydroxycholesterol on satellite cell proliferation and differentiation of broilers[J]. Poult Sci, 2021, 100(2):474-481. [35] Trindade B C, Ceglia S, Berthelette A, et al.The cholesterol metabolite 25-hydroxycholesterol restrains the transcriptional regulator srebp2 and limits intestinal iga plasma cell differentiation[J]. Immunity, 2021, 54(10):73-87. [36] Sato M, Sugiyama K, Maeda N, et al.Local biosynthesis of corticosterone in rat skeletal muscle[J]. The Journal of Steroid Biochemistry and Molecular Biology, 2020, 201(6):105693. [37] Korytowski W, Wawak K, Pabisz P, et al.Macrophage mitochondrial damage from star transport of 7-hydroperoxycholesterol: Implications for oxidative stress-impaired reverse cholesterol transport[J]. FEBS Lett, 2014, 588(1):65-70. [38] Martin L A, Kennedy B E, Karten B.Mitochondrial cholesterol: Mechanisms of import and effects on mitochondrial function[J]. J Bioenerg Biomembr, 2016, 48(2):137-151. [39] Montero J, Mari M, Colell A, et al.Cholesterol and peroxidized cardiolipin in mitochondrial membrane properties, permeabilization and cell death[J]. Biochim Biophys Acta, 2010, 1797(6-7):1217-1224. [40] Baechler B L, Bloemberg D, Quadrilatero J.Mitophagy regulates mitochondrial network signaling, oxidative stress, and apoptosis during myoblast differentiation[J]. Autophagy, 2019, 15(9):1606-1619. [41] Sin J, Andres A M, Taylor D J, et al.Mitophagy is required for mitochondrial biogenesis and myogenic differentiation of c2c12 myoblasts[J]. Autophagy, 2016, 12(2):369-380. |
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