Liu Haiying, Ye Wenling, Guan Guangju, Dong Zheng, Jia Zhanjun, Yang Tianxin
Univ. of Utah and VA Medical Center, 30 N 1900 E, Rm. 4R312, Salt Lake City, UT 84132, USA.
Am J Physiol Renal Physiol. 2007 Dec;293(6):F1898-904. doi: 10.1152/ajprenal.00360.2007. Epub 2007 Sep 19.
Calcineurin (Cn)-Aalpha-deficient mice develop abnormalities of postnatal kidney development, similar to that of cyclooxygenase (COX)-2-deficient mice. The present study was undertaken to examine expression and regulation of Cn isoforms in the developing kidney during the postnatal period and further characterize the relationship between Cn and COX-2. The protein expressions of all three Cn isoforms, including Cn-Aalpha, -Abeta, and -B, as determined by immunoblotting, increased in parallel in the first postnatal week and declined gradually with age. Renal Cn-Aalpha and -Abeta mRNA expressions were both developmentally regulated in the same fashion as their protein expressions, whereas renal Cn-B1 mRNA was not obviously induced in the first postnatal week. Immunohistochemistry demonstrated colocalization of Cn-Aalpha, Cn-Abeta, and COX-2 in the same cells of thick ascending limb and macula densa. Administration with cyclosporine A (2.5 mg.kg(-1).day(-1)) during the postnatal period remarkably suppressed renal COX-2 expression as assessed by both immunoblotting and immunohistochemistry. Deletion of Cn-Aalpha but not Cn-Abeta in mice significantly reduced renal COX-2 expression at the postnatal period. Together, these data suggest that renal Cn isoforms are subject to normal developmental regulation and they may play a role in postnatal kidney development via interaction with COX-2.
钙调神经磷酸酶(Cn)-Aα缺陷小鼠会出现出生后肾脏发育异常,类似于环氧化酶(COX)-2缺陷小鼠。本研究旨在检测出生后发育中的肾脏中Cn同工型的表达和调控,并进一步阐明Cn与COX-2之间的关系。通过免疫印迹法测定,包括Cn-Aα、-Aβ和-B在内的所有三种Cn同工型的蛋白表达在出生后的第一周平行增加,并随年龄逐渐下降。肾脏Cn-Aα和-Aβ的mRNA表达与它们的蛋白表达一样受到发育调控,而肾脏Cn-B1的mRNA在出生后的第一周没有明显诱导。免疫组织化学显示Cn-Aα、Cn-Aβ和COX-2在厚壁升支和致密斑的相同细胞中共定位。出生后给予环孢素A(2.5mg·kg⁻¹·天⁻¹),通过免疫印迹法和免疫组织化学评估均显著抑制了肾脏COX-2的表达。小鼠中Cn-Aα而非Cn-Aβ的缺失在出生后显著降低了肾脏COX-2的表达。总之,这些数据表明肾脏Cn同工型受到正常的发育调控,并且它们可能通过与COX-2相互作用在出生后肾脏发育中发挥作用。