George Britta, Fan Qingfeng, Dlugos Christopher P, Soofi Abdulsalam A, Zhang Jidong, Verma Rakesh, Park Tae-Ju, Wong Hetty, Curran Tom, Nihalani Deepak, Holzman Lawrence B
Renal-Electrolyte and Hypertension Division, University of Pennsylvania, Philadelphia, PA, USA.
Medizinische Klinik und Poliklinik D, Universitätsklinikum Münster, Münster, Germany.
Kidney Int. 2014 Jun;85(6):1382-1394. doi: 10.1038/ki.2013.556. Epub 2014 Feb 5.
Activation of the slit diaphragm protein nephrin induces actin cytoskeletal remodeling, resulting in lamellipodia formation in podocytes in vitro in a phosphatidylinositol-3 kinase-, focal adhesion kinase-, Cas-, and Crk1/2-dependent fashion. In mice, podocyte-specific deletion of Crk1/2 prevents or attenuates foot process effacement in two models of podocyte injury. This suggests that cellular mechanisms governing lamellipodial protrusion in vitro are similar to those in vivo during foot process effacement. As Crk1/2-null mice developed and aged normally, we tested whether the Crk1/2 paralog, CrkL, functionally complements Crk1/2 in a podocyte-specific context. Podocyte-specific CrkL-null mice, like podocyte-specific Crk1/2-null mice, developed and aged normally but were protected from protamine sulfate-induced foot process effacement. Simultaneous podocyte-specific deletion of Crk1/2 and CrkL resulted in albuminuria detected by 6 weeks postpartum and associated with altered podocyte process architecture. Nephrin-induced lamellipodia formation in podocytes in vitro was CrkL-dependent. CrkL formed a hetero-oligomer with Crk2 and, like Crk2, was recruited to tyrosine phosphorylated nephrin. Thus, Crk1/2 and CrkL are physically linked, functionally complement each other during podocyte foot process spreading, and together are required for developing typical foot process architecture.
缝隙隔膜蛋白nephrin的激活可诱导肌动蛋白细胞骨架重塑,从而在体外以磷脂酰肌醇-3激酶、粘着斑激酶、Cas和Crk1/2依赖的方式导致足细胞中片状伪足的形成。在小鼠中,在两种足细胞损伤模型中,足细胞特异性缺失Crk1/2可预防或减轻足突消失。这表明,体外控制片状伪足突出的细胞机制与体内足突消失时的机制相似。由于Crk1/2基因敲除小鼠正常发育和衰老,我们测试了Crk1/2的旁系同源物CrkL在足细胞特异性背景下是否在功能上补充Crk1/2。足细胞特异性CrkL基因敲除小鼠与足细胞特异性Crk1/2基因敲除小鼠一样,正常发育和衰老,但可免受硫酸鱼精蛋白诱导的足突消失。产后6周时,足细胞同时特异性缺失Crk1/2和CrkL会导致蛋白尿,并伴有足细胞突起结构改变。体外足细胞中nephrin诱导的片状伪足形成依赖于CrkL。CrkL与Crk2形成异源寡聚体,并且与Crk2一样,被募集到酪氨酸磷酸化的nephrin上。因此,Crk1/2和CrkL在物理上相互联系,在足细胞足突扩展过程中在功能上相互补充,并且共同是形成典型足突结构所必需的。