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Role of the SMN complex in snRNP biogenesis
Hanušková, Klára ; Staněk, David (advisor) ; Šubrtová, Adriána (referee)
Small nuclear ribonucleoprotein particles (snRNPs) are an essential component of the spliceosome, a dynamic protein complex that mediates RNA splicing. These particles are composed of a single small nuclear RNA, from which they take their name, a ring of seven Sm or LSm proteins and other accessory proteins. All snRNPs undergo a complex maturation pathway, taking place in the nucleus and cytoplasm of the cell. One important factor in snRNP biogenesis is the SMN complex, which is composed of the SMN, Gemin2-8 and Unrip proteins. Its most important function is to mediate the assembly of the Sm core domain in the cytoplasm of the cell, with the help of the PRMT5 complex. Furthermore, the SMN complex is also involved in snRNA modification, import of the snRNP core, or assembly of the spliceosome itself. Despite more than two decades of research, some of the functions of the SMN complex and its particles have not been fully revealed, and thus it is not clear from the cell to what extent this complex influences not only snRNP biogenesis but also the entire spliceosome. The aim of this work, according to the available research, is to describe the SMN complex in more depth and to understand its functions in snRNP particle biogenesis. Key words: SMN complex, snRNP, snRNA, Sm protein, spliceosome

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3 Hanušková, Karolína
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