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Article

Screening a Spliced Leader-Based Symbiodinium microadriaticum cDNA Library Using the Yeast-Two Hybrid System Reveals a Hemerythrin-Like Protein as a Putative SmicRACK1 Ligand

by
Tania Islas-Flores
1,*,
Edgardo Galán-Vásquez
2 and
Marco A. Villanueva
1,*
1
Unidad Académica de Sistemas Arrecifales, Instituto de Ciencias del Mar y Limnología, Universidad Nacional Autónoma de México, UNAM, Prolongación Avenida Niños Héroes S/N, Puerto Morelos, Quintana Roo 77580, México
2
Departamento de Ingeniería de Sistemas Computacionales y Automatización, Instituto de Investigación en Matemáticas Aplicadas y en Sistemas, Universidad Nacional Autónoma de México, UNAM, Circuito Escolar 3000, Ciudad Universitaria, Ciudad de México CP 04510, México
*
Authors to whom correspondence should be addressed.
Microorganisms 2021, 9(4), 791; https://doi.org/10.3390/microorganisms9040791
Submission received: 25 February 2021 / Revised: 13 March 2021 / Accepted: 16 March 2021 / Published: 9 April 2021

Abstract

The dinoflagellate Symbiodiniaceae family plays a central role in the health of the coral reef ecosystem via the symbiosis that establishes with its inhabiting cnidarians and supports the host metabolism. In the last few decades, coral reefs have been threatened by pollution and rising temperatures which have led to coral loss. These events have raised interest in studying Symbiodiniaceae and their hosts; however, progress in understanding their metabolism, signal transduction pathways, and physiology in general, has been slow because dinoflagellates present peculiar characteristics. We took advantage of one of these peculiarities; namely, the post-transcriptional addition of a Dino Spliced Leader (Dino-SL) to the 5′ end of the nuclear mRNAs, and used it to generate cDNA libraries from Symbiodinium microadriaticum. We compared sequences from two Yeast-Two Hybrid System cDNA Libraries, one based on the Dino-SL sequence, and the other based on the SMART technology (Switching Mechanism at 5′ end of RNA Transcript) which exploits the template switching function of the reverse transcriptase. Upon comparison of the performance of both libraries, we obtained a significantly higher yield, number and length of sequences, number of transcripts, and better 5′ representation from the Dino-SL based library than from the SMART library. In addition, we confirmed that the cDNAs from the Dino-SL library were adequately expressed in the yeast cells used for the Yeast-Two Hybrid System which resulted in successful screening for putative SmicRACK1 ligands, which yielded a putative hemerythrin-like protein.
Keywords: cDNA library; coral reefs; Hemerythrin-like protein; RACK1; spliced leader; Symbiodinium; yeast two-hybrid cDNA library; coral reefs; Hemerythrin-like protein; RACK1; spliced leader; Symbiodinium; yeast two-hybrid

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MDPI and ACS Style

Islas-Flores, T.; Galán-Vásquez, E.; Villanueva, M.A. Screening a Spliced Leader-Based Symbiodinium microadriaticum cDNA Library Using the Yeast-Two Hybrid System Reveals a Hemerythrin-Like Protein as a Putative SmicRACK1 Ligand. Microorganisms 2021, 9, 791. https://doi.org/10.3390/microorganisms9040791

AMA Style

Islas-Flores T, Galán-Vásquez E, Villanueva MA. Screening a Spliced Leader-Based Symbiodinium microadriaticum cDNA Library Using the Yeast-Two Hybrid System Reveals a Hemerythrin-Like Protein as a Putative SmicRACK1 Ligand. Microorganisms. 2021; 9(4):791. https://doi.org/10.3390/microorganisms9040791

Chicago/Turabian Style

Islas-Flores, Tania, Edgardo Galán-Vásquez, and Marco A. Villanueva. 2021. "Screening a Spliced Leader-Based Symbiodinium microadriaticum cDNA Library Using the Yeast-Two Hybrid System Reveals a Hemerythrin-Like Protein as a Putative SmicRACK1 Ligand" Microorganisms 9, no. 4: 791. https://doi.org/10.3390/microorganisms9040791

APA Style

Islas-Flores, T., Galán-Vásquez, E., & Villanueva, M. A. (2021). Screening a Spliced Leader-Based Symbiodinium microadriaticum cDNA Library Using the Yeast-Two Hybrid System Reveals a Hemerythrin-Like Protein as a Putative SmicRACK1 Ligand. Microorganisms, 9(4), 791. https://doi.org/10.3390/microorganisms9040791

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