Department of Genetics, Rutgers University, Piscataway, New Jersey 08854, USA.
Urology. 2010 Apr;75(4):914-22. doi: 10.1016/j.urology.2009.10.031. Epub 2009 Dec 29.
To identify factors that may be crucial for the initiation and progression of stone-induced injury in the developing mouse kidney by a prospective observational study using microarray analysis. Kidney stone diseases are common in premature infants, but the underlying molecular and cellular mechanisms are not fully defined.
Mice with adenine phosphoribosyltransferase deficiency develop 2,8-dihydroxyadenine (DHA) nephrolithiasis. The gene expression changes between Aprt(-/-) and Aprt(+/+) kidneys from newborn and adult mice were compared using Affymetrix gene chips. Targets of interest were further analyzed by quantitative real-time polymerase chain reaction and immunohistochemistry.
We identified a set of genes that were differentially expressed in the developing kidney in response to DHA-induced injury. In 1-week-old Aprt(-/-) mice, the expression of Sprr2f and Clu was highly augmented and that of Egf was significantly decreased. We also observed that maturation-related gene expression changes were delayed in developing Aprt(-/-) kidneys, and immature Aprt(-/-) kidneys contained large numbers of intercalated cells that were blocked from terminal differentiation.
This study presents a comprehensive picture of the transcriptional changes induced by DHA stone injury in the developing mouse kidney. Our findings help explain growth impairment in kidneys subject to injury during the early stages of development.
通过前瞻性观察研究,利用微阵列分析,确定可能对发育中鼠肾结石诱导损伤的发生和进展起关键作用的因素。肾结石疾病在早产儿中很常见,但潜在的分子和细胞机制尚未完全确定。
腺嘌呤磷酸核糖基转移酶缺乏的小鼠会发生 2,8-二羟腺嘌呤(DHA)肾石病。通过 Affymetrix 基因芯片比较新生和成年 Aprt(-/-)和 Aprt(+/+)小鼠肾脏之间的 Aprt(-/-)和 Aprt(+/+)肾脏的基因表达变化。通过定量实时聚合酶链反应和免疫组织化学进一步分析感兴趣的靶标。
我们鉴定了一组在发育中的肾脏中对 DHA 诱导的损伤有差异表达的基因。在 1 周龄的 Aprt(-/-)小鼠中,Sprr2f 和 Clu 的表达显著增强,而 Egf 的表达显著降低。我们还观察到,发育中 Aprt(-/-)肾脏的成熟相关基因表达变化延迟,未成熟的 Aprt(-/-)肾脏含有大量的闰细胞,这些闰细胞被阻止从终末分化。
本研究全面描述了 DHA 结石损伤在发育中鼠肾中诱导的转录变化。我们的发现有助于解释在发育早期受到损伤的肾脏生长受损的原因。