Kondo Yoshiaki, Morimoto Tetsuji, Nishio Toshiyuki, Aslanova Ulviyya Fizuli, Nishino Minako, Farajov Elnur Ilham, Sugawara Noriko, Kumagai Naonori, Ohsaga Atsushi, Maruyama Yoshio, Takahashi Shori
Department of Medical Informatics, Tohoku University Graduate School of Medicine, 1-1 Seiryo-machi, Aoba-ku, Sendai, 980-8574, Japan.
Clin Exp Nephrol. 2006 Sep;10(3):165-74. doi: 10.1007/s10157-006-0429-4.
The urine-concentrating mechanism is one of the most fundamental functions of avian and mammalian kidneys. This particular function of the kidneys developed as a system to accumulate NaCl in birds and as a system to accumulate NaCl and urea in mammals. Based on phylogenetic evidence, the mammalian urine-concentrating mechanism may have evolved as a modification of the renal medulla's NaCl accumulating system that is observed in birds. This qualitative conversion of the urine-concentrating mechanism in the mammalian inner medulla of the kidneys may occur during the neonatal period. Human kidneys have several suboptimal features caused by the neonatal conversion of the urine-concentrating mechanism. The urine-concentrating mechanism is composed of various functional molecules, including water channels, solute transporters, and vasopressin receptors. Abnormalities in water channels aquaporin (AQP)1 and AQP2, as well as in the vasopressin receptor V2R, are known to cause nephrogenic diabetes insipidus. An analysis of the pathological mechanism involved in nephrogenic diabetes insipidus suggests that molecular chaperones may improve the intracellular trafficking of AQP2 and V2R, and, in the near future, such chaperones may become a new clinical tool for treating nephrogenic diabetes insipidus.
尿液浓缩机制是鸟类和哺乳动物肾脏最基本的功能之一。肾脏的这一特殊功能在鸟类中发展为积累氯化钠的系统,在哺乳动物中发展为积累氯化钠和尿素的系统。基于系统发育证据,哺乳动物的尿液浓缩机制可能是由鸟类中观察到的肾髓质氯化钠积累系统演变而来的。肾脏内髓质尿液浓缩机制的这种质的转变可能发生在新生儿期。人类肾脏具有因尿液浓缩机制的新生儿期转变而导致的一些次优特征。尿液浓缩机制由多种功能分子组成,包括水通道、溶质转运体和血管加压素受体。已知水通道蛋白(AQP)1和AQP2以及血管加压素受体V2R的异常会导致肾性尿崩症。对肾性尿崩症所涉及病理机制的分析表明,分子伴侣可能会改善AQP2和V2R的细胞内运输,并且在不久的将来,此类分子伴侣可能会成为治疗肾性尿崩症的一种新的临床工具。