Pietilä Ilkka, Prunskaite-Hyyryläinen Renata, Kaisto Susanna, Tika Elisavet, van Eerde Albertien M, Salo Antti M, Garma Leonardo, Miinalainen Ilkka, Feitz Wout F, Bongers Ernie M H F, Juffer André, Knoers Nine V A M, Renkema Kirsten Y, Myllyharju Johanna, Vainio Seppo J
Laboratory of Developmental Biology, Oulu Centre for Cell-Matrix Research, Biocenter Oulu and Infotech Oulu, and Faculty of Biochemistry and Molecular Medicine, University of Oulu, Oulu, Finland.
Department of Genetics, Center for Molecular Medicine, University Medical Center Utrecht, Utrecht, The Netherlands.
PLoS One. 2016 Jan 21;11(1):e0147171. doi: 10.1371/journal.pone.0147171. eCollection 2016.
The Wnts can be considered as candidates for the Congenital Anomaly of Kidney and Urinary Tract, CAKUT diseases since they take part in the control of kidney organogenesis. Of them Wnt5a is expressed in ureteric bud (UB) and its deficiency leads to duplex collecting system (13/90) uni- or bilateral kidney agenesis (10/90), hypoplasia with altered pattern of ureteric tree organization (42/90) and lobularization defects with partly fused ureter trunks (25/90) unlike in controls. The UB had also notably less tips due to Wnt5a deficiency being at E15.5 306 and at E16.5 765 corresponding to 428 and 1022 in control (p<0.02; p<0.03) respectively. These changes due to Wnt5a knock out associated with anomalies in the ultrastructure of the UB daughter epithelial cells. The basement membrane (BM) was malformed so that the BM thickness increased from 46.3 nm to 71.2 nm (p<0.01) at E16.5 in the Wnt5a knock out when compared to control. Expression of a panel of BM components such as laminin and of type IV collagen was also reduced due to the Wnt5a knock out. The P4ha1 gene that encodes a catalytic subunit of collagen prolyl 4-hydroxylase I (C-P4H-I) in collagen synthesis expression and the overall C-P4H enzyme activity were elevated by around 26% due to impairment in Wnt5a function from control. The compound Wnt5a+/-;P4ha1+/- embryos demonstrated Wnt5a-/- related defects, for example local hyperplasia in the UB tree. A R260H WNT5A variant was identified from renal human disease cohort. Functional studies of the consequence of the corresponding mouse variant in comparison to normal ligand reduced Wnt5a-signalling in vitro. Together Wnt5a has a novel function in kidney organogenesis by contributing to patterning of UB derived collecting duct development contributing putatively to congenital disease.
Wnts可被视为先天性肾脏和尿路异常(CAKUT)疾病的候选因素,因为它们参与肾脏器官发生的调控。其中,Wnt5a在输尿管芽(UB)中表达,其缺失会导致双肾盂收集系统(13/90)、单侧或双侧肾发育不全(10/90)、输尿管树组织模式改变的发育不全(42/90)以及输尿管干部分融合的小叶化缺陷(25/90),与对照组不同。由于Wnt5a缺失,在E15.5时UB的尖端显著减少至306个,在E16.5时为765个,而对照组分别为428个和1022个(p<0.02;p<0.03)。这些因Wnt5a基因敲除引起的变化与UB子代上皮细胞超微结构异常有关。基底膜(BM)畸形,因此与对照组相比,在E16.5时Wnt5a基因敲除小鼠的BM厚度从46.3nm增加到71.2nm(p<0.01)。由于Wnt5a基因敲除,一组BM成分如层粘连蛋白和IV型胶原的表达也降低。在胶原合成表达中编码胶原脯氨酰4-羟化酶I(C-P4H-I)催化亚基的P4ha1基因以及总体C-P4H酶活性,由于Wnt5a功能受损,比对照组升高了约26%。复合的Wnt5a+/-;P4ha1+/-胚胎表现出与Wnt5a-/-相关的缺陷,例如UB树局部增生。从人类肾脏疾病队列中鉴定出一种R260H WNT5A变体。与正常配体相比,相应小鼠变体后果的功能研究在体外降低了Wnt5a信号传导。总之,Wnt5a在肾脏器官发生中具有新功能,通过促进UB衍生的集合管发育模式形成,可能导致先天性疾病。