scholarly article | Q13442814 |
P2093 | author name string | Hong Li | |
Yu Zhao | |||
Ge Yu | |||
P2860 | cites work | Are snoRNAs and snoRNA host genes new players in cancer? | Q61054146 |
Structural comparison of yeast snoRNP and spliceosomal protein Snu13p with its homologs | Q81864572 | ||
Non-coding RNAs: lessons from the small nuclear and small nucleolar RNAs | Q22121992 | ||
A common core RNP structure shared between the small nucleoar box C/D RNPs and the spliceosomal U4 snRNP | Q24290525 | ||
RNA structural requirements for the association of the spliceosomal hPrp31 protein with the U4 and U4atac small nuclear ribonucleoproteins | Q24297661 | ||
Binding of the human Prp31 Nop domain to a composite RNA-protein platform in U4 snRNP | Q24301901 | ||
Functional interaction of a novel 15.5kD [U4/U6.U5] tri-snRNP protein with the 5' stem-loop of U4 snRNA | Q24529915 | ||
A dimeric structure for archaeal box C/D small ribonucleoproteins | Q24612601 | ||
Identification of brain-specific and imprinted small nucleolar RNA genes exhibiting an unusual genomic organization | Q24673252 | ||
Crystal structure of the spliceosomal 15.5kD protein bound to a U4 snRNA fragment | Q27629324 | ||
The kink-turn: a new RNA secondary structure motif | Q27633834 | ||
Inherent protein structural flexibility at the RNA-binding interface of L30e | Q27640500 | ||
Structure and function of archaeal box C/D sRNP core proteins | Q27640574 | ||
Alternative conformations of the archaeal Nop56/58-fibrillarin complex imply flexibility in box C/D RNPs | Q27646585 | ||
Structural organization of box C/D RNA-guided RNA methyltransferase | Q27656947 | ||
Structural Basis for Substrate Placement by an Archaeal Box C/D Ribonucleoprotein Particle | Q27664654 | ||
The structure of the box C/D enzyme reveals regulation of RNA methylation | Q27687149 | ||
Architecture of the 90S Pre-ribosome: A Structural View on the Birth of the Eukaryotic Ribosome | Q27719631 | ||
Making ribosomes | Q27930690 | ||
Identification of novel proteins associated with yeast snR30 small nucleolar RNA | Q27931780 | ||
A large nucleolar U3 ribonucleoprotein required for 18S ribosomal RNA biogenesis | Q27937306 | ||
A computational screen for methylation guide snoRNAs in yeast | Q28137615 | ||
Eukaryotic ribosome biogenesis at a glance | Q29542167 | ||
The small nucleolar RNAs | Q29616486 | ||
SAM (dependent) I AM: the S-adenosylmethionine-dependent methyltransferase fold | Q29618153 | ||
The U3 small nucleolar ribonucleoprotein functions in the first step of preribosomal RNA processing | Q29622894 | ||
Specialized box C/D snoRNPs act as antisense guides to target RNA base acetylation | Q33778882 | ||
Strong dependence between functional domains in a dual-function snoRNA infers coupling of rRNA processing and modification events | Q33889344 | ||
AdoMet-dependent methylation, DNA methyltransferases and base flipping | Q33941847 | ||
Site-specific cross-linking analyses reveal an asymmetric protein distribution for a box C/D snoRNP. | Q34089829 | ||
Functional requirement for symmetric assembly of archaeal box C/D small ribonucleoprotein particles | Q34267955 | ||
The U14 snoRNA is required for 2'-O-methylation of the pre-18S rRNA in Xenopus oocytes | Q34361284 | ||
Coexisting Liquid Phases Underlie Nucleolar Subcompartments | Q34527840 | ||
The small subunit processome in ribosome biogenesis—progress and prospects | Q34559435 | ||
A novel RNA-binding motif in omnipotent suppressors of translation termination, ribosomal proteins and a ribosome modification enzyme? | Q34842344 | ||
RNA-guided nucleotide modification of ribosomal and other RNAs | Q34997177 | ||
Temporal and developmental requirements for the Prader-Willi imprinting center | Q35807517 | ||
Ribosome synthesis meets the cell cycle | Q35958186 | ||
The box C/D sRNP dimeric architecture is conserved across domain Archaea | Q36114064 | ||
RNA-guided isomerization of uridine to pseudouridine--pseudouridylation | Q36189576 | ||
Dual function of C/D box small nucleolar RNAs in rRNA modification and alternative pre-mRNA splicing | Q36742729 | ||
Ribosome biogenesis in the yeast Saccharomyces cerevisiae | Q37269766 | ||
Box C/D guide RNAs recognize a maximum of 10 nt of substrates. | Q37305067 | ||
The human box C/D snoRNAs U3 and U8 are required for pre-rRNA processing and tumorigenesis. | Q37644889 | ||
Molecular architecture of the 90S small subunit pre-ribosome | Q37705614 | ||
Structures of ribonucleoprotein particle modification enzymes. | Q37812407 | ||
The box C/D and H/ACA snoRNPs: key players in the modification, processing and the dynamic folding of ribosomal RNA. | Q37953892 | ||
Noncoding RNAs in eukaryotic ribosome biogenesis and function | Q38309688 | ||
Induced fit of RNA on binding the L7Ae protein to the kink-turn motif | Q38324259 | ||
Control of box C/D snoRNP assembly by N6-methylation of adenine | Q38721760 | ||
Assembly and trafficking of box C/D and H/ACA snoRNPs | Q38974934 | ||
Architecture of the yeast small subunit processome. | Q39097171 | ||
C/D-box snoRNAs form methylating and non-methylating ribonucleoprotein complexes: Old dogs show new tricks | Q39307120 | ||
Archaea box C/D enzymes methylate two distinct substrate rRNA sequences with different efficiency | Q39960795 | ||
Archaeal fibrillarin-Nop5 heterodimer 2'-O-methylates RNA independently of the C/D guide RNP particle. | Q40174680 | ||
Base pairing between U3 and the pre-ribosomal RNA is required for 18S rRNA synthesis. | Q40789290 | ||
Box C/D sRNA stem ends act as stabilizing anchors for box C/D di-sRNPs. | Q41453121 | ||
Protein-protein and protein-RNA contacts both contribute to the 15.5K-mediated assembly of the U4/U6 snRNP and the box C/D snoRNPs | Q41491190 | ||
The association of late-acting snoRNPs with human pre-ribosomal complexes requires the RNA helicase DDX21 | Q41812618 | ||
Processing of the yeast pre-rRNA at sites A(2) and A(3) is linked. | Q41965703 | ||
Box C/D snoRNP catalysed methylation is aided by additional pre-rRNA base-pairing | Q42074816 | ||
Identification of novel ribonucleo-protein complexes from the brain-specific snoRNA MBII-52. | Q42751912 | ||
Exclusive interaction of the 15.5 kD protein with the terminal box C/D motif of a methylation guide snoRNP. | Q44195042 | ||
Evidence for rRNA 2'-O-methylation plasticity: Control of intrinsic translational capabilities of human ribosomes. | Q47381402 | ||
AML1-ETO requires enhanced C/D box snoRNA/RNP formation to induce self-renewal and leukaemia | Q47565832 | ||
A Pan-cancer Analysis of the Expression and Clinical Relevance of Small Nucleolar RNAs in Human Cancer. | Q47592005 | ||
Structure of protein L7Ae bound to a K-turn derived from an archaeal box H/ACA sRNA at 1.8 A resolution | Q47640330 | ||
Molecular basis of box C/D RNA-protein interactions; cocrystal structure of archaeal L7Ae and a box C/D RNA. | Q47640445 | ||
3.2-Å-resolution structure of the 90S preribosome before A1 pre-rRNA cleavage | Q47716726 | ||
The complete structure of the small-subunit processome. | Q47748425 | ||
U3 small nucleolar RNA is essential for cleavage at sites 1, 2 and 3 in pre-rRNA and determines which rRNA processing pathway is taken in Xenopus oocytes | Q48923070 | ||
Activity dependent LoNA regulates translation by coordinating rRNA transcription and methylation. | Q55402539 | ||
Structural basis for site-specific ribose methylation by box C/D RNA protein complexes | Q59090053 | ||
P433 | issue | 12 | |
P304 | page(s) | 1625-1633 | |
P577 | publication date | 2018-09-25 | |
P1433 | published in | RNA | Q7277164 |
P1476 | title | The multistructural forms of box C/D ribonucleoprotein particles | |
P478 | volume | 24 |
Q64280762 | C/D box snoRNAs in viral infections: RNA viruses use old dogs for new tricks |
Q91902372 | Functional diversity of small nucleolar RNAs |
Q90584887 | The guide sRNA sequence determines the activity level of box C/D RNPs |
Q92289313 | Yeast R2TP Interacts with Extended Termini of Client Protein Nop58p |
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