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Differential regulation of transition zone and centriole proteins contributes to ciliary base diversity

Title
Differential regulation of transition zone and centriole proteins contributes to ciliary base diversity
Type
Article in International Scientific Journal
Year
2018
Authors
Jana, SC
(Author)
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Mendonca, S
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Machado, P
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Werner, S
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Rocha, J
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Pereira, A
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Helder Maiato
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Bettencourt Dias, M
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Journal
Title: Nature Cell BiologyImported from Authenticus Search for Journal Publications
Vol. 20
Pages: 928-+
ISSN: 1465-7392
Publisher: Springer Nature
Other information
Authenticus ID: P-00P-1AS
Abstract (EN): Cilia are evolutionarily conserved structures with many sensory and motility-related functions. The ciliary base, composed of the basal body and the transition zone, is critical for cilia assembly and function, but its contribution to cilia diversity remains unknown. Hence, we generated a high-resolution structural and biochemical atlas of the ciliary base of four functionally distinct neuronal and sperm cilia types within an organism, Drosophila melanogaster. We uncovered a common scaffold and diverse structures associated with different localization of 15 evolutionarily conserved components. Furthermore, CEP290 (also known as NPHP6) is involved in the formation of highly diverse transition zone links. In addition, the cartwheel components SAS6 and ANA2 (also known as STIL) have an underappreciated role in basal body elongation, which depends on BLD10 (also known as CEP135). The differential expression of these cartwheel components contributes to diversity in basal body length. Our results offer a plausible explanation to how mutations in conserved ciliary base components lead to tissue-specific diseases.
Language: English
Type (Professor's evaluation): Scientific
No. of pages: 16
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