个性化文献订阅>期刊> Journal of clinical investigation
 

Combining Cep290 and Mkks ciliopathy alleles in mice rescues sensory defects and restores ciliogenesis

  作者 Rachel, RA; May-Simera, HL; Veleri, S; Gotoh, N; Choi, BY; Murga-Zamalloa, C; McIntyre, JC; Marek, J; Lopez, I; Hackett, AN; Brooks, M; den Hollander, AI; Beales, PL; Li, TS; Jacobson, SG; Sood, R; Martens, JR; Liu, P; Friedman, TB; Khanna, H; Koenekoop, RK; Kelley, MW; Swaroop, A  
  选自 期刊  Journal of clinical investigation;  卷期  2012年122-4;  页码  1233-1245  
  关联知识点  
 

[摘要]Cilia are highly specialized microtubule-based organelles that have pivotal roles in numerous biological processes, including transducing sensory signals. Defects in cilia biogenesis and transport cause pleiotropic human ciliopathies. Mutations in over 30 different genes can lead to cilia defects, and complex interactions exist among ciliopathy-associated proteins. Mutations of the centrosomal protein 290 kDa (CEP290) lead to distinct clinical manifestations, including Leber congenital amaurosis (LCA), a hereditary cause of blindness due to photoreceptor degeneration. Mice homozygous for a mutant Cep290 allele (Cep290(rd16) mice) exhibit LCA-like early-onset retinal degeneration that is caused by an in-frame deletion in the CEP290 protein. Here, we show that the domain deleted in the protein encoded by the Cep290(rd16) allele directly interacts with another ciliopathy protein, MKKS. MKKS mutations identified in patients with the ciliopathy Bardet-Biedl syndrome disrupted this interaction. In zebrafish embryos, combined subminimal knockdown of mkks and cep290 produced sensory defects in the eye and inner ear. Intriguingly, combinations of Cep290(rd16) and Mkks(ko) alleles in mice led to improved ciliogenesis and sensory functions compared with those of either mutant alone. We propose that altered association of CEP290 and MKKS affects the integrity of multiprotein complexes at the cilia transition zone and basal body. Amelioration of the sensory phenotypes caused by specific mutations in one protein by removal of an interacting domain/protein suggests a possible novel approach for treating human ciliopathies.

 
      被申请数(0)  
 

[全文传递流程]

一般上传文献全文的时限在1个工作日内