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14-3-3 蛋白稳定肌动蛋白和波形蛋白丝,以维持肾肾小球足细胞中的过程。

14-3-3 Proteins stabilize actin and vimentin filaments to maintain processes in renal glomerular podocyte.

机构信息

Department of Cell Biology, Kidney Research Center, Niigata University Graduate School of Medical and Dental Sciences, Niigata, Japan.

出版信息

FASEB J. 2023 Oct;37(10):e23168. doi: 10.1096/fj.202300865R.

Abstract

14-3-3 proteins are a ubiquitously expressed family of adaptor proteins. Despite exhibiting high sequence homology, several 14-3-3 isoforms have isoform-specific binding partners and roles. We reported that 14-3-3β interacts with FKBP12 and synaptopodin to maintain the structure of actin fibers in podocytes. However, the precise localization and differential role of 14-3-3 isoforms in kidneys are unclear. Herein, we showed that 14-3-3β in glomeruli was restricted in podocytes, and 14-3-3σ in glomeruli was expressed in podocytes and mesangial cells. Although 14-3-3β was dominantly co-localized with FKBP12 in the foot processes, a part of 14-3-3β was co-localized with Par3 at the slit diaphragm. 14-3-3β interacted with Par3, and FKBP12 bound to 14-3-3β competitively with Par3. Deletion of 14-3-3β enhanced the interaction of Par3 with Par6 in podocytes. Gene silencing for 14-3-3β altered the structure of actin fibers and process formation. 14-3-3β and synaptopodin expression was decreased in podocyte injury models. In contrast, 14-3-3σ in podocytes was expressed in the primary processes. 14-3-3σ interacted with vimentin but not with the actin-associated proteins FKBP12 and synaptopodin. Gene silencing for 14-3-3σ altered the structure of vimentin fibers and process formation. 14-3-3σ and vimentin expression was increased in the early phase of podocyte injury models but was decreased in the late stage. Together, the localization of 14-3-3β at actin cytoskeleton plays a role in maintaining the foot processes and the Par complex in podocytes. In contrast, 14-3-3σ at vimentin cytoskeleton is essential for maintaining primary processes.

摘要

14-3-3 蛋白是一种普遍表达的衔接蛋白家族。尽管它们表现出高度的序列同源性,但几种 14-3-3 同工型具有同工型特异性的结合伙伴和作用。我们报道了 14-3-3β 与 FKBP12 和 synaptopodin 相互作用,以维持足细胞中肌动蛋白纤维的结构。然而,14-3-3 同工型在肾脏中的精确定位和差异作用尚不清楚。在此,我们表明肾小球中的 14-3-3β 局限于足细胞,而肾小球中的 14-3-3σ 表达于足细胞和系膜细胞。虽然 14-3-3β 在足突中主要与 FKBP12 共定位,但一部分 14-3-3β 在裂隙隔膜处与 Par3 共定位。14-3-3β 与 Par3 相互作用,FKBP12 与 Par3 竞争结合 14-3-3β。14-3-3β 的缺失增强了足细胞中 Par3 与 Par6 的相互作用。14-3-3β 的基因沉默改变了肌动蛋白纤维的结构和过程形成。足细胞损伤模型中 14-3-3β 和 synaptopodin 的表达减少。相反,14-3-3σ 在足细胞的初级突起中表达。14-3-3σ 与波形蛋白相互作用,但不与肌动蛋白相关蛋白 FKBP12 和 synaptopodin 相互作用。14-3-3σ 的基因沉默改变了波形蛋白纤维的结构和过程形成。足细胞损伤模型的早期阶段,14-3-3σ 和波形蛋白的表达增加,但在晚期阶段减少。总之,14-3-3β 在肌动蛋白细胞骨架上的定位在维持足细胞中的足突和 Par 复合物中起作用。相比之下,14-3-3σ 在波形蛋白细胞骨架上对于维持初级突起是必需的。

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