| [1] | Wang L, Xu YM, Cheng ZJ, Xiong ZP, Deng LB . Advances in genetics of metabolic disorders of cholesterol. Hereditas (Beijing), 2014,36(9):857-863. | | [1] | 王立, 徐颜美, 程竹君, 熊招平, 邓立彬 . 胆固醇代谢紊乱的遗传学研究进展. 遗传, 2014,36(9):857-863. | | [2] | Hofmann AF . Detoxification of lithocholic acid, a toxic bile acid: relevance to drug hepatotoxicity. Drug Metab Rev, 2004,36(3-4):703-722. | | [3] | Akerlund JE, Bj?rkhem I . Studies on the regulation of cholesterol 7α-hydroxylase and HMG-CoA reductase in rat liver: effects of lymphatic drainage and ligation of the lymph duct. J Lipid Res, 1991,31(12):2159-2166. | | [4] | Vlahcevic ZR, Heuman DM, Hylemon PB . Regulation of bile acid synthesis. Hepatology, 1991,13(3):590-600. | | [5] | Chiang JYL . Bile acid metabolism and signaling. Compr Physiol, 2013,3(3):1191-1212. | | [6] | Chiang JYL . Recent advances in understanding bile acid homeostasis. F1000research, 2017,6:2029. | | [7] | Axelson M, Sjovall J . Potential bile acid precursors in plasma-possible indicators of biosynthetic pathways to cholic and chenodeoxycholic acids in man. J steroid Biochem, 1990,36(6):631-640. | | [8] | Carey MC, Small DM . Micellar properties of sodium fusidate, a steroid antibiotic structurally resembling the bile salts. J Lipid Res, 1971,12(5):604-613. | | [9] | Albaugh VL, Banan B, Ajouz H, Abumrad NN, Flynn CR . Bile acids and bariatric surgery. Mol Aspects Med, 2017,56:75-89. | | [10] | Zhang JC, Nie QH . Bile acid metabolism and its related progress. Chin J Gastroenter Hepatol, 2008,17(11):953-956. | | [10] | 张久聪, 聂青和 . 胆汁酸代谢及相关进展. 胃肠病学和肝病学杂志. 2008,17(11):953-956. | | [11] | Ferrebee CB, Dawson PA . Metabolic effects of intestinal absorption and enterohepatic cycling of bile acids. Acta Pharm Sin B, 2015,5(2):129-134. | | [12] | Wang DP, Stroup D, Marrapodi M, Crestani M, Galli G, Chiang JY . Transcriptional regulation of the human cholesterol 7alpha-hydroxylase gene (CYP7A) in HepG2 cells. J Lipid Res, 1996,37(9):1831-1841. | | [13] | Ding L, Yang L, Wang Z, Huang W . Bile acid nuclear receptor FXR and digestive system diseases. Acta Pharm Sin B, 2015,5(2):135-144. | | [14] | Molinaro A, Wahlstr?m A, Marschall HU . Role of bile acids in metabolic control. Trends Endocrin Met, 2017,29(1):31-41. | | [15] | Goodwin B, Jones SA, Price RR, Watson MA, McKee DD, Moore LB, Galardi C, Wilson JG, Lewis MC, Roth ME, Maloney PR, Willson TM, Kliewer SA . A regulatory cascade of the nuclear |
| [1] |
张宗旺, 熊敬维. AARS1/2:从蛋白质翻译到代谢与免疫调控的双重功能[J]. 遗传, 2025, 47(9): 967-978. |
| [2] |
南文慧, 秦训思, 李蓉. 脂质代谢失衡:复发性流产的潜在病理机制与干预新思路[J]. 遗传, 2025, 47(9): 979-991. |
| [3] |
张潇, 于燕, 宁勇, 洪绮雯, 史怀平. MicroRNA促进基因表达研究进展[J]. 遗传, 2025, 47(7): 729-741. |
| [4] |
罗昊玉, 闫晓红, 牟芳, 王宁. 真核生物mRNA 3′非翻译区最新研究进展[J]. 遗传, 2025, 47(6): 616-624. |
| [5] |
罗敬, 雷开英, 石嵩, 徐小丽, 孙学良, 宋美君, 张红平, 李利. 顺式调控元件在动物骨骼肌肌纤维类型决定和转化中的作用[J]. 遗传, 2025, 47(4): 437-447. |
| [6] |
任佳琳, 童依泽, 蔡瑞. 染色质相关RNA的m6A修饰调控染色质可及性与基因转录研究进展[J]. 遗传, 2025, 47(11): 1186-1196. |
| [7] |
王纪龙, 李青, 战廷正. 自转录活性调节区测序技术在增强子发现研究中的应用[J]. 遗传, 2024, 46(8): 589-602. |
| [8] |
沈院, 李金涛, 尹淼, 雷群英. 支链氨基酸代谢在肿瘤发生发展中的作用[J]. 遗传, 2024, 46(6): 438-451. |
| [9] |
孙明洁, 卢佳丽, 逄越. 七鳃鳗——铁代谢研究的极佳模型[J]. 遗传, 2024, 46(5): 387-397. |
| [10] |
孙朝冉, 吴旭东. 组蛋白变体H2A.Z的转录调控功能与动态作用机制[J]. 遗传, 2024, 46(4): 279-289. |
| [11] |
尤琳琳, 张余. 细菌转录终止的分子机制研究进展[J]. 遗传, 2024, 46(12): 982-994. |
| [12] |
吴秀红, 汪亚军, 车利锋, 王晓萍. 非编码DNA调控元件在动物适应性性状演化中的研究进展[J]. 遗传, 2024, 46(12): 995-1016. |
| [13] |
温馨, 梅锦, 钱美玉, 蒋一丹, 王娟, 许士博, 王翠喆, 张君. 基于转录组测序对GULP1下游靶基因筛选及分析[J]. 遗传, 2024, 46(10): 860-870. |
| [14] |
徐晓鹏, 范小英. 单细胞精度的表达数量性状位点研究进展[J]. 遗传, 2024, 46(10): 795-806. |
| [15] |
万羽鑫, 朱欣雨, 赵宇, 孙娜, 江天彤妃, 徐娟. 计算解析异常代谢对乳腺癌微环境重塑的调控机制[J]. 遗传, 2024, 46(10): 871-885. |
|