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Query: EC:3.4.25.1 (
proteasome
)
28,817
document(s) hit in 31,850,051 MEDLINE articles (0.00 seconds)
Ubiquitin (Ub) is a highly conserved small protein present universally in eukaryotic cells, which is covalently attached to substrate proteins by a cascade system, consisting of activating (E1), conjugating (E2), and/or ligating (E3) enzymes. The modification of cellular proteins with Ub targets them for degradation by a large multisubunit protease, called the 26S
proteasome
. The unexpected existence of many genes encoding E2 and E3 reveals that a number of distinct Ub-ligating pathways operate for selective proteolysis in cells, implying its involvement in divergent biologically important processes. Currently, it becomes clear that a set of novel molecules with a structural similarity to Ub, called Ub-like proteins (Ubls), is present in various eukaryotic cells. They are divided into two subclasses: type-1 Ubls with small sizes, such as SUMO1 and
NEDD8
, that are ligated to target proteins in a fashion similar, but not identical, to the ubiquitination pathway, and another type-2 Ubls that contain Ub-like structure in a variety of different classes of large proteins having apparently distinct functions, such as Rad23, Elongin B, and Parkin. Ub and type-1 Ubls are central players consisting of a new type of post-translational protein-modifying system, although the significance of type-2 Ubl remains obscure.
...
PMID:The ligation systems for ubiquitin and ubiquitin-like proteins. 985 35
The
NEDD8
/Rub1 class of ubiquitin-like proteins has been implicated in progression of the cell cycle from G1 into S phase. These molecules undergo a metabolism that parallels that of ubiquitin and involves specific interactions with many different proteins. We report here the crystal structure of recombinant human
NEDD8
refined at 1.6-A resolution to an R factor of 21.9%. As expected from the high sequence similarity (57% identical), the
NEDD8
structure closely resembles that reported previously for ubiquitin. We also show that recombinant human
NEDD8
protein is activated, albeit inefficiently, by the ubiquitin-activating (E1) enzyme and that
NEDD8
can be transferred from E1 to the ubiquitin conjugating enzyme E2-25K. E2-25K adds
NEDD8
to a polyubiquitin chain with an efficiency similar to that of ubiquitin. A chimeric tetramer composed of three ubiquitins and one histidine-tagged
NEDD8
binds to the 26 S
proteasome
with an affinity similar to that of tetraubiquitin. Seven residues that differ from the corresponding residues in ubiquitin, but are conserved between
NEDD8
orthologs, are candidates for mediating interactions with
NEDD8
-specific partners. One such residue, Ala-72 (Arg in ubiquitin), is shown to perform a key role in selecting against reaction with the ubiquitin E1 enzyme, thereby acting to prevent the inappropriate diversion of
NEDD8
into ubiquitin-specific pathways.
...
PMID:Crystal structure of the human ubiquitin-like protein NEDD8 and interactions with ubiquitin pathway enzymes. 985 30
Spinal bulbar muscular atrophy is a neurodegenerative disorder caused by a polyglutamine expansion in the androgen receptor (AR). We show in transiently transfected HeLa cells that an AR containing 48 glutamines (ARQ48) accumulates in a hormone-dependent manner in both cytoplasmic and nuclear aggregates. Electron microscopy reveals both types of aggregates to have a similar ultrastructure. ARQ48 aggregates sequester mitochondria and steroid receptor coactivator 1 and stain positively for
NEDD8
, Hsp70, Hsp90 and HDJ-2/HSDJ. Co-expression of HDJ-2/HSDJ significantly represses aggregate formation. ARQ48 aggregates also label with antibodies recognizing the PA700
proteasome
caps but not 20S core particles. These results suggest that ARQ48 accumulates due to protein misfolding and a breakdown in proteolytic processing. Furthermore, the homeostatic disturbances associated with aggregate formation may affect normal cell function.
...
PMID:Polyglutamine-expanded androgen receptors form aggregates that sequester heat shock proteins, proteasome components and SRC-1, and are suppressed by the HDJ-2 chaperone. 1019 62
Ubiquitin is a small polypeptide that covalently modifies other cellular proteins and targets them to the
proteasome
for degradation. In recent years, ubiquitin-dependent proteolysis has been demonstrated to play a critical role in the regulation of many cellular processes, such as cell cycle progression, cell signaling, and immune recognition. The recent discovery of three new ubiquitin-like proteins,
NEDD8
, Sentrin/SUMO, and Apg12, has further broadened the horizon of this type of post-translational protein modification. This review will focus on the biology and biochemistry of the Sentrin/SUMO and
NEDD8
modification pathways, which are clearly distinct from the ubiquitination pathway and have unique biological functions.
...
PMID:Ubiquitin-like proteins: new wines in new bottles. 1080 45
It has recently been determined that the proteolytic destruction of IkappaB (inhibitor of NF-kappaB) by the ubiquitin-
proteasome
system plays a key role in the immediate elimination of IkappaB from the IkappaB-(NF-kappaB) complex which allows nuclear translocation of free NF-kappaB, thus leading to activation of a multitude of target genes. The SCF(Fbw1) (composed of Skp1, Cul-1, Roc1, and Fbw1) complex, identified as an IkappaBalpha-E3 ligase, binds and ubiquitylates IkappaBalpha phosphorylated by IkappaB kinase that has been activated in response to extracellular signals. The generating poly-ubiquitin chain is finally recognized by the 26S
proteasome
for ultimate degradation. In this NF-kappaB signalling pathway, it becomes clear that the SCF(Fbw1) activity is enhanced by a ubiquitin-like protein
NEDD8
(equivalent to Rub1) that modifies Cul-1 in a manner analogous to ubiquitylation, and consequently, IkappaBalpha proteolysis is induced.
NEDD8
is a new regulator of the SCF ubiquitin-ligase, functioning as a covalent modifier for proteolytic targeting at a physiological level.
...
PMID:Control of IkappaBalpha proteolysis by the ubiquitin-proteasome pathway. 1129 96
The COP9 signalosome is an evolutionarily conserved multiprotein complex that was first identified as an essential complex that represses light-regulated development in Arabidopsis. The COP9 signalosome has similarity to the lid of the 19S regulatory particle of the 26S
proteasome
and has recently been shown to interact with SCF-type E3 ubiquitin ligases. Although its precise role in the process of protein degradation remains to be established, the COP9 signalosome is a positive regulator of E3 ubiquitin ligases that functions at least in part by mediating the deconjugation of the
NEDD8
/RUB-modification from the cullin subunit of SCF-type E3 complexes. Here, we discuss these recent findings, which add an additional component to the biology of substrate-specific protein degradation.
...
PMID:COP9 signalosome revisited: a novel mediator of protein degradation. 1156 75
NEDD8
is a ubiquitin-like protein that controls vital biological events through its conjugation to cullin family members. Recently, we identified a negative regulator of the
NEDD8
conjugation system, NUB1, which interacts with
NEDD8
and down-regulates
NEDD8
expression post-transcriptionally (Kito, K., Yeh, E. T. H., and Kamitani, T. (2001) J. Biol. Chem. 276, 20603-20609). Here, we show that NUB1 possesses a ubiquitin-like domain at the N-terminal region and binds to S5a of the 19 S
proteasome
activator (PA700). A GST pull-down assay revealed that the overexpression of NUB1 leads to a greater precipitation of
NEDD8
conjugates with GST-S5a, suggesting that NUB1 might have an adaptor function between S5a and
NEDD8
. Furthermore,
proteasome
inhibitors completely block NUB1-mediated down-regulation of
NEDD8
expression. These results suggest that NUB1 recruits
NEDD8
and its conjugates to the
proteasome
for degradation, providing a direct functional link between the
NEDD8
conjugation system and the proteasomal degradation pathway.
...
PMID:Targeting of NEDD8 and its conjugates for proteasomal degradation by NUB1. 1158 40
Proteolysis by the ubiquitin-
proteasome
system is considered to play a pathological role in several degenerative diseases that involve ubiquitinated inclusion bodies. In recent years, several ubiquitin-like proteins have been isolated, but it is uncertain whether their roles are associated with protein degradation through the ubiquitin-
proteasome
system.
NEDD8
(neural precursor cell-expressed and developmentally down-regulated gene), which consists of 81 amino acid residues, possesses the highest sequence similarity to ubiquitin. Recent studies have indicated that
NEDD8
is covalently ligated to cullin family proteins, which are components of certain ubiquitin E3 ligases, by a pathway analogous to that of ubiquitin. Thus, by focusing on the structural and functional association between
NEDD8
and ubiquitin, it would be of interest to know whether the
NEDD8
system is involved in pathological disorders of the ubiquitin-
proteasome
system. This study has examined the immunohistochemical distribution of
NEDD8
protein by using a highly purified antibody in normal tissues and in tissues known to contain ubiquitinated inclusions.
NEDD8
protein expression was widely observed in most types of tissues. Furthermore, accumulation of the
NEDD8
protein was commonly observed in ubiquitinated inclusion bodies, including Lewy bodies in Parkinson's disease, Mallory bodies in alcoholic liver disease, and Rosenthal fibres in astrocytoma. Two of ten cases of neurofibrillary tangles and senile plaques from patients with Alzheimer's disease showed intense staining for
NEDD8
as well as for ubiquitin. These findings suggest the possibility that the
NEDD8
system is involved in the metabolism of these inclusion bodies via the ubiquitin-
proteasome
system.
...
PMID:NEDD8 protein is involved in ubiquitinated inclusion bodies. 1253 40
Steroid hormone receptors, including estrogen receptor-alpha (ERalpha), are ligand-activated transcription factors, and hormone binding leads to depletion of receptor levels via preteasome-mediated degradation.
NEDD8
(neural precursor cell-expressed developmentally down-regulated) is an ubiquitin-like protein essential for protein processing and cell cycle progression. We recently demonstrated that ubiquitin-activating enzyme (Uba)3, the catalytic subunit of the
NEDD8
-activating enzyme, inhibits ERalpha transcriptional activity. Here we report that Uba3-mediated inhibition of ERalpha transactivation function is due to increased receptor protein turnover. Coexpression of Uba3 with ERalpha increased receptor degradation by the 26S
proteasome
. Inhibition of
NEDD8
activation and conjugation diminished polyubiquitination of ERalpha and blocked
proteasome
-mediated degradation of receptor protein. The antiestrogen ICI 182,780 is known to induce ER degradation. In human MCF7 breast cancer cells modified to contain a disrupted
NEDD8
pathway, ICI 182,780 degradation of ERalpha was impaired, and the antiestrogen was ineffective at inhibiting cell proliferation. This study provides the first evidence linking nuclear receptor degradation with the
NEDD8
pathway and the ubiquitin-
proteasome
system, suggesting that the two pathways can act together to modulate ERalpha turnover and cellular responses to estrogens. Based on our observation that an intact
NEDD8
pathway is essential for the antiproliferation activity of the ICI 182,780 in ERalpha positive breast cancer cells, we propose that disruptions in the
NEDD8
pathway provide a mechanism by which breast cancer cells acquire antiestrogen resistance while retaining expression of ERalpha.
...
PMID:The NEDD8 pathway is required for proteasome-mediated degradation of human estrogen receptor (ER)-alpha and essential for the antiproliferative activity of ICI 182,780 in ERalpha-positive breast cancer cells. 1255 66
NEDD8
is a ubiquitin-like protein that controls vital biological events through its conjugation to target proteins. We previously identified a negative regulator of the
NEDD8
conjugation system, NUB1, which works by recruiting
NEDD8
and its conjugates to the
proteasome
for degradation. Recently, we found its splicing variant, NUB1L. It possesses an insertion of 14 amino acids that codes for a UBA domain. Structural study revealed that NUB1 has a
NEDD8
-binding site at the C terminus, whereas NUB1L has an additional site at the newly generated UBA domain. Interestingly, the sequence A(X4)L(X10)L(X3)L was conserved in these
NEDD8
-binding sites among human and other mammals. Mutational studies revealed that at least three Leu residues in the conserved sequence are required for binding with
NEDD8
. Functional study suggested that the
NEDD8
-binding ability at the C terminus of NUB1 and NUB1L is mainly involved in the down-regulation of
NEDD8
, but the
NEDD8
-binding ability at the UBA2 domain of NUB1L is minimally or not involved at all. The
NEDD8
-binding ability at the UBA2 domain might be required for an unknown function of NUB1L.
...
PMID:Regulation of the NEDD8 conjugation system by a splicing variant, NUB1L. 1281 48
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