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核糖体蛋白L5在前部发育过程中通过凋亡途径发挥作用。

The Ribosomal Protein L5 Functions During Anterior Development Through Apoptotic Pathways.

作者信息

Schreiner Corinna, Kernl Bianka, Dietmann Petra, Riegger Ricarda J, Kühl Michael, Kühl Susanne J

机构信息

Institute of Biochemistry and Molecular Biology, Ulm University, Ulm, Germany.

International Graduate School in Molecular Medicine Ulm, Ulm, Germany.

出版信息

Front Cell Dev Biol. 2022 Feb 22;10:777121. doi: 10.3389/fcell.2022.777121. eCollection 2022.

Abstract

Ribosomal biogenesis is a fundamental process necessary for cell growth and division. Ribosomal protein L5 (Rpl5) is part of the large ribosomal subunit. Mutations in this protein have been associated with the congenital disease Diamond Blackfan anemia (DBA), a so called ribosomopathy. Despite of the ubiquitous need of ribosomes, clinical manifestations of DBA include tissue-specific symptoms, e.g., craniofacial malformations, eye abnormalities, skin pigmentation failure, cardiac defects or liver cirrhosis. Here, we made use of the vertebrate model organism and showed a specific expression of in the developing anterior tissue correlating with tissues affected in ribosomopathies. Upon Rpl5 knockdown using an antisense-based morpholino oligonucleotide approach, we showed different phenotypes affecting anterior tissue, i.e., defective cranial cartilage, malformed eyes, and microcephaly. Hence, the observed phenotypes in resemble the clinical manifestations of DBA. Analyses of the underlying molecular basis revealed that the expression of several marker genes of neural crest, eye, and brain are decreased during induction and differentiation of the respective tissue. Furthermore, Rpl5 knockdown led to decreased cell proliferation and increased cell apoptosis during early embryogenesis. Investigating the molecular mechanisms underlying Rpl5 function revealed a more than additive effect between either loss of function of Rpl5 and loss of function of c-Myc or loss of function of Rpl5 and gain of function of Tp53, suggesting a common signaling pathway of these proteins. The co-injection of the apoptosis blocking molecule Bcl2 resulted in a partial rescue of the eye phenotype, supporting the hypothesis that apoptosis is one main reason for the phenotypes occurring upon Rpl5 knockdown. With this study, we are able to shed more light on the still poorly understood molecular background of ribosomopathies.

摘要

核糖体生物合成是细胞生长和分裂所必需的基本过程。核糖体蛋白L5(Rpl5)是大核糖体亚基的一部分。该蛋白的突变与先天性疾病钻石黑范贫血(DBA)相关,这是一种所谓的核糖体病。尽管核糖体普遍需要,但DBA的临床表现包括组织特异性症状,例如颅面畸形、眼部异常、皮肤色素沉着障碍、心脏缺陷或肝硬化。在这里,我们利用脊椎动物模型生物,显示了其在发育中的前部组织中的特异性表达,这与核糖体病中受影响的组织相关。使用基于反义吗啉代寡核苷酸方法敲低Rpl5后,我们发现了影响前部组织的不同表型,即颅骨软骨缺陷、眼睛畸形和小头畸形。因此,在该模型中观察到的表型类似于DBA的临床表现。对潜在分子基础的分析表明,在各自组织的诱导和分化过程中,神经嵴、眼睛和大脑的几个标记基因的表达降低。此外,Rpl5敲低导致早期胚胎发育过程中细胞增殖减少和细胞凋亡增加。研究Rpl5功能的分子机制发现,Rpl5功能丧失与c-Myc功能丧失之间或Rpl5功能丧失与Tp53功能获得之间存在超过加性的效应,这表明这些蛋白质存在共同的信号通路。共注射凋亡阻断分子Bcl2导致眼睛表型部分恢复,支持了细胞凋亡是Rpl5敲低后出现表型的一个主要原因的假设。通过这项研究,我们能够更深入地了解仍知之甚少的核糖体病分子背景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0593/8905602/aa470d24e2ef/fcell-10-777121-g001.jpg

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