Yang Baoxue, Li Xin, Guo Lirong, Meng Yan, Dong Zixun, Zhao Xuejian
State Key Laboratory of Natural and Biomimetic Drugs, Key Laboratory of Molecular Cardiovascular Sciences, Ministry of Education, Peking University, Beijing, 100191, China,
Subcell Biochem. 2014;73:153-64. doi: 10.1007/978-94-017-9343-8_10.
The urea transporter UT-B is expressed in multiple tissues including erythrocytes, kidney, brain, heart, liver, colon, bone marrow, spleen, lung, skeletal muscle, bladder, prostate, and testis in mammals. Phenotype analysis of UT-B-null mice has confirmed that UT-B deletion results in a urea-selective urine-concentrating defect (see Chap. 9 ). The functional significance of UT-B in extrarenal tissues studied in the UT-B-null mouse is discussed in this chapter. UT-B-null mice present depression-like behavior with urea accumulation and nitric oxide reduction in the hippocampus. UT-B deletion causes a cardiac conduction defect, and TNNT2 and ANP expression changes in the aged UT-B-null heart. UT-B also plays a very important role in protecting bladder urothelium from DNA damage and apoptosis by regulating the urea concentration in urothelial cells. UT-B functional deficiency results in urea accumulation in the testis and early maturation of the male reproductive system. These results show that UT-B is an indispensable transporter involved in maintaining physiological functions in different tissues.
尿素转运蛋白UT - B在哺乳动物的多种组织中表达,包括红细胞、肾脏、大脑、心脏、肝脏、结肠、骨髓、脾脏、肺、骨骼肌、膀胱、前列腺和睾丸。对UT - B基因敲除小鼠的表型分析证实,UT - B缺失会导致尿素选择性尿液浓缩缺陷(见第9章)。本章将讨论UT - B基因敲除小鼠中所研究的肾外组织中UT - B的功能意义。UT - B基因敲除小鼠表现出抑郁样行为,海马体中尿素积累且一氧化氮减少。UT - B缺失会导致心脏传导缺陷,老年UT - B基因敲除小鼠的心脏中TNNT2和ANP表达发生变化。UT - B在通过调节膀胱上皮细胞中的尿素浓度来保护膀胱上皮免受DNA损伤和凋亡方面也起着非常重要的作用。UT - B功能缺陷会导致睾丸中尿素积累以及雄性生殖系统早熟。这些结果表明,UT - B是维持不同组织生理功能所必需的转运蛋白。