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Kaur, J. N.

Publications and source records attributed to Kaur, J. N..

2 recordsLinked to original sources

Arginine methylation of Puf4 drives diverse protein functions

The evolutionarily conserved Pumilio domain-containing RNA binding proteins (RBPs) are involved in many steps of post-transcriptional gene regulation, including RNA stability, polyadenylation, deadenylation, and translation. RBPs are post-translationally modified by methylation of arginine/glycine-rich domains, though the consequences of these modifications are not well known. We determined the arginine methylation and phosphorylation landscape of the Pumilio domain-containing RBP Puf4 from the basidiomycete fungus Cryptococcus neoformans. We found that methyl-deficient Puf4 mutants do not complement critical PUF4 deletion phenotypes, such as resistances to endoplasmic reticulum stress and antifungals, and cell wall remodeling. Methyl-deficient mutants also exhibit unique RNA and protein interactions. Lastly, we identified intra-protein cross talk between post-translationally modified methylated and phosphorylated residues. Overall, we show that post-translational modifications, particularly arginine methylation, of Puf4 regulate the functions of this RBP.

molecular biology↗

Selective nuclear export of mRNAs is promoted by DRBD18 in Trypanosoma brucei

Kinetoplastids, including Trypanosoma brucei, control gene expression primarily at the posttranscriptional level. Nuclear mRNA export is an important, but understudied, step in this process. The general heterodimeric export factors, Mex67/Mtr2, function in the export of mRNAs and tRNAs in T. brucei, but RNA binding proteins (RBPs) that regulate export processes by controlling the dynamics of Mex67/Mtr2 ribonucleoprotein formation or transport have not been identified. Here, we report that DRBD18, an essential and abundant T. brucei RBP, associates with Mex67/Mtr2 in vivo, likely through its direct interaction with Mtr2. DRBD18 downregulation results in partial accumulation of poly(A)+ mRNA in the nucleus, but has no effect on localization of intron-containing or mature tRNAs. Comprehensive analysis of transcriptomes from whole cell and cytosol in DRBD18 knockdown parasites demonstrates that depletion of DRBD18 leads to impairment of nuclear export of a subset of mRNAs. CLIP experiments reveal association of DRBD18 with several of these mRNAs. Moreover, DRBD18 knockdown leads to a partial accumulation of the Mex67/Mtr2 export receptors in the nucleus. Taken together, the current study supports a model in which DRBD18 regulates the selective nuclear export of mRNAs by promoting the mobilization of export competent mRNPs to the cytosol through the nuclear pore complex.

microbiology↗