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네이버 전문자료
Sculpting the proteome with AAA(+) proteases and disassembly machines.
AbstractMachines of protein destruction—including energy-dependent proteases and disassembly chaperones of the AAA+ ATPase family—
Improved Structures of Full-Length p97, an AAA ATPase: Implications for Mechanisms of Nucleotide
SummaryThe ATPases associated with various cellular activities (AAA) protein p97 has been implicated in a variety of cellular process
Katanin, a Microtubule-Severing Protein, Is a Novel AAA ATPase that Targets to the Centrosome Us
Microtubule disassembly at centrosomes is involved in mitotic spindle function. The microtubule-severing protein katanin, a heterodime
Interplay between an AAA module and an integrin I domain may regulate the function of magnesium
Abstract In chlorophyll biosynthesis, insertion of Mg 2+ into protoporphyrin IX is catalysed in an ATP-dependent reaction b
Nucleotide-dependent conformational changes of the AAA+ ATPase p97 revisited.
The ubiquitous AAA-ATPase p97 segregates ubiquitylated proteins from their molecular environment. Previous studies of the nucleotide-d
The AAA+ ATPase TRIP13 remodels HORMA domains through N-terminal engagement and unfolding.
Proteins of the conserved HORMA domain family, including the spindle assembly checkpoint protein MAD2 and the meiotic HORMADs, assembl
The conserved AAA-ATPase Msp1 confers organelle specificity to tail-anchored proteins.
The accuracy of tail-anchored (TA) protein targeting to the endoplasmic reticulum (ER) depends on the Guided Entry of Tail-Anchored (G
Bacterial Enhancer Binding Proteins—AAA+ Proteins in Transcription Activation
Bacterial enhancer-binding proteins (bEBPs) are specialised transcriptional activators. bEBPs are hexameric AAA+ ATPases and use ATPas
Phosphorylation of Human TFAM in Mitochondria Impairs DNA Binding and Promotes Degradation by th
SummaryHuman mitochondrial transcription factor A (TFAM) is a high-mobility group (HMG) protein at the nexus of mitochondrial DNA (mtD
Ubiquitin-Independent Disassembly by a p97 AAA-ATPase Complex Drives PP1 Holoenzyme Formation
SummaryThe functional diversity of protein phosphatase-1 (PP1), with its countless substrates, relies on the ordered assembly of alter
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