Murdiastuti Kwartarini, Purwanti Nunuk, Karabasil Mileva Ratko, Li Xuefei, Yao Chenjuan, Akamatsu Tetsuya, Kanamori Norio, Hosoi Kazuo
Department of Molecular Oral Physiology, Institute of Health Biosciences, The University of Tokushima Graduate School, Tokushima, Japan.
Am J Physiol Gastrointest Liver Physiol. 2006 Dec;291(6):G1081-8. doi: 10.1152/ajpgi.00449.2005. Epub 2006 Aug 10.
A greater than twofold diversity in the expression level of aquaporin 5 (AQP5) has been observed in the membrane fraction of the submandibular gland (SMG) in Sprague-Dawley rats (Murdiastuti K, Miki O, Yao C, Parvin MN, Kosugi-Tanaka C, Akamatsu T, Kanamori N, and Hosoi K. Pflügers Arch 445: 405-412, 2002). In the present study, breeding between brother and sister rats was repeated within high AQP5 producers and low ones to obtain inbred offspring. High- and low-producer rats from 3rd to 18th generations were used for experiments. By Western blotting, levels of AQP5 proteins in the parotid and lacrimal glands, and lungs were all low in low producers, whereas they were all high in high producers, implying genetic variations of the gene for this water channel. Despite this implication, AQP5 mRNA levels were almost the same between the two groups by Northern blotting, suggesting the irrelevance of transcriptional regulation for this diversity. AQP5 cDNAs from the SMGs of the two groups were sequenced. The nucleotide sequence of AQP5 cDNA from low producers indicated the existence of a point mutation at nt 308 (G308A), leading to a replacement of (103)Gly with (103)Asp in the third transmembrane domain, but no alteration was detected in the Kozak area. The existence of such a mutation was confirmed by the assessment of genomic DNA also. This mutation may have resulted in an abnormal membrane insertion or ineffective trafficking of AQP5, since the rats having this mutation showed extremely low membrane expression of AQP5 in the SMG acinar cells and decreased water secretion from their salivary glands.
在Sprague-Dawley大鼠的颌下腺(SMG)膜组分中,已观察到水通道蛋白5(AQP5)的表达水平存在两倍以上的差异(Murdiastuti K,Miki O,Yao C,Parvin MN,Kosugi-Tanaka C,Akamatsu T,Kanamori N和Hosoi K. Pflügers Arch 445:405 - 412,2002)。在本研究中,在高AQP5产生者和低AQP5产生者之间反复进行亲兄妹大鼠交配,以获得近交后代。使用第3代至第18代的高产生者和低产生者大鼠进行实验。通过蛋白质免疫印迹法,低产生者的腮腺、泪腺和肺中的AQP5蛋白水平均较低,而高产生者的这些组织中AQP5蛋白水平均较高,这意味着该水通道基因存在遗传变异。尽管有此暗示,但通过Northern印迹法检测发现两组之间的AQP5 mRNA水平几乎相同,这表明转录调控与这种差异无关。对两组SMG的AQP5 cDNA进行了测序。低产生者的AQP5 cDNA核苷酸序列表明在第308位核苷酸处存在点突变(G308A),导致第三个跨膜结构域中的(103)甘氨酸被(103)天冬氨酸取代,但在Kozak区域未检测到改变。通过对基因组DNA的评估也证实了这种突变的存在。这种突变可能导致AQP5的膜插入异常或运输无效,因为具有这种突变的大鼠在SMG腺泡细胞中显示出极低的AQP5膜表达,并且其唾液腺的水分泌减少。