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Recruitment of the human ribonucleolytic RNA exosome to nuclear polyadenylated (pA+) RNA is facilitated by the Poly(A) Tail eXosome Targeting (PAXT) connection. Besides its core dimer, formed by the exosome co-factor MTR4 and the ZFC3H1 protein, the PAXT connection remains poorly defined. By charact...
ORGANISM(S): Homo Sapiens (human) 
PAP-gamma associates with PAXT nuclear exosome to control the abundance of PROMPT ncRNAs
The Human ZC3H3 and RBM26/27 Proteins Are Critical for PAXT-mediated Nuclear RNA Decay
Recruitment of the human ribonucleolytic RNA exosome to nuclear polyadenylated (pA+) RNA is facilitated by the Poly(A) Tail eXosome Targeting (PAXT) connection. Besides its core dimer, formed by the exosome co-factor MTR4 and the ZFC3H1 protein, the PAXT connection remains poorly defined. By charact...
ORGANISM(S): Homo sapiens 
2020-01-09 | GSE131255 | GEO
The PAXT connection is a modifier of rare codon-enriched protein expression
Pervasive transcription of the human genome generates an abundance of RNAs that must be processed and degraded. The nuclear RNA exosome is the main RNA degradation machinery in the nucleus. However, nuclear exosome must be recruited to its substrates by targeting complexes, such as NEXT or PAXT. By ...
ORGANISM(S): Homo sapiens 
2023-10-02 | GSE189157 | GEO
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