Comparison of NF-κB from the protists Capsaspora owczarzaki and Acanthoeca spectabilis reveals extensive evolutionary diversification of this transcription factor

Author:

Williams Leah M.,Sridhar Sainetra,Samaroo Jason,Peart Jada,Adindu Ebubechi K.,Addanki Anvitha,DiRusso Christopher J.,Alburi Dana H. M.,Anisimov Ludmila,Armstrong Aria Y.,Badger Sydney J.,Banaie Elham,Teixeira Joana A. Barbosa,Billingsley Madeleine T.,Calikyan Anoush,Chen Yinxing,Coia Aidan B.,Cutillo Daniel,Dooling Breanna R.,Doshi Parth P.,Dubinsky Kyra R.,Velasco Berta Escude,Evans Jabari R.,Gordon Jasmine,Guan Huibo,Haliotis Spiro N.,Hood Niccolas T.,Huang Yen-Chun,Jiang Wenjing,Kreber Isabelle C.,Kurak Ekin B.,Lee Cheng-Che,Lehmann Tanner M.,Lin Savina J. W.,Liu Edward,Liu Kevin,Liu Yen-Yu,Luther Alexandra L.,Macgranaky-Quaye Alexa A.,Magat Daniel J.,Malsick Lauren E.,Masoudi Parmida,Masoudi Parsida,Max Chad R. H.,McCaslin Ethan Z.,McGeary Eleanor T.,McLaughlin Kathleen M.,Momyer Victoria S. A.,Murphy Lake D.,Nguyen Sonny V.,Ni Kareemah,Novak Leon,Santos Roberto Nunes Campos E.,Osayame Yemi D.,Chang Jun Bai Park,Patel Harshal M.,Pham Tony V.,Phillips Sheila M.,Piedrahita Jhonathan Perea,Post Tricia L.,Prather Rebecca A.,Reck Pauline I.,Rodriguez Jaime A.,Rolle Kirquenique A.,Salzo Joseph A.,Satko Kathryn M.,Settipane Davis G.,Sevola Kara J.,Shah Mithil V.,Skidanova Viktoriya,Snyder Georgia M.,Sprague Rebecca J.,Stagg Ryan A.,Tong Danielle,Towers Andreas A.,Turgiss Nicholas W.,Wheeler Natalie S.,Yung Ann S.,Aguirre Carrión Pablo J.,Rodriguez-Sastre Nahomie,Siggers TrevorORCID,Gilmore Thomas D.ORCID,

Abstract

AbstractWe provide a functional characterization of transcription factor NF-κB in protists and provide information about the evolution and diversification of this biologically important protein. We characterized NF-κB in two protists using phylogenetic, cellular, and biochemical techniques. NF-κB of the holozoan Capsaspora owczarzaki (Co) has an N-terminal DNA-binding domain and a C-terminal Ankyrin repeat (ANK) domain, and its DNA-binding specificity is more similar to metazoan NF-κB proteins than to Rel proteins. Removal of the ANK domain allows Co-NF-κB to enter the nucleus, bind DNA, and activate transcription. However, C-terminal processing of Co-NF-κB is not induced by IκB kinases in human cells. Overexpressed Co-NF-κB localizes to the cytoplasm in Co cells. Co-NF-κB mRNA and DNA-binding levels differ across three Capsaspora life stages. RNA-sequencing and GO analyses identify possible gene targets of Co-NF-κB. Three NF-κB-like proteins from the choanoflagellate Acanthoeca spectabilis (As) contain conserved Rel Homology domain sequences, but lack C-terminal ANK repeats. All three As-NF-κB proteins constitutively enter the nucleus of cells, but differ in their DNA-binding abilities, transcriptional activation activities, and dimerization properties. These results provide a basis for understanding the evolutionary origins of this key transcription factor and could have implications for the origins of regulated immunity in higher taxa.

Funder

National Science Foundation

Publisher

Springer Science and Business Media LLC

Subject

General Agricultural and Biological Sciences,General Biochemistry, Genetics and Molecular Biology,Medicine (miscellaneous)

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