Background: Cullin ubiquitin ligases are activated via the covalent modification of Cullins by the small ubiquitin-like protein nedd8 in a process called neddylation. Genetic mutations of cullin-4b (cul4b) cause a prevalent type of X-linked intellectual disability (XLID) in males, but the physiological function of Cul4B in neuronal cells remains unclear. Results: There are three major isoforms of Cul4B (1, 2, and 3) in human and rodent tissues. By examining the endogenous Cul4B isoforms in the brain, this study demonstrates that Cul4B-1 and Cul4B-2 isoforms are unneddylated and more abundant in the brain whereas the lesser species Cul4B-3 that misses the N-terminus present in the other two isoforms is neddylated. The data suggest that the N...
Cullin-RING ligases (CRL) are ubiquitin E3 enzymes that bind substrates through variable substrate r...
Astrocytes are themost abundant cell type in themammalian brain and are important for the functions ...
Timely and efficient destruction of proteins in the cell is critical for its normal function. The ub...
CUL4B, encoding a scaffold protein for the assembly of Cullin4B-Ring ubiquitin ligase (CRL4B) comple...
AbstractTruncating or missense mutation of cullin 4B (CUL4B) is one of the most prevalent causes und...
AbstractCullin 4B (CUL4B) is a scaffold protein involved in the assembly of cullin-RING ubiquitin li...
We reevaluated a previously reported family with an X-linked mental retardation syndrome and attempt...
<div><p>Cullin-RING ligases (CRLs) complexes participate in the regulation of diverse cellular proce...
Cullin-RING ligases (CRLs) complexes participate in the regulation of diverse cellular processes, in...
Intellectual disability (ID), one of the most common human developmental disorders, can be caused by...
The evolutionarily conserved cullin family proteins can assemble as many as 400 distinct E3 ubiquiti...
Cullin-9 (CUL9) is a member of the Cullin ubiquitin ligase family strongly expressed in the brain. R...
Variants in cullin 4B (CUL4B) are a known cause of syndromic X-linked intellectual disability. Here,...
De novo loss of function mutations in the ubiquitin ligase-encoding gene Cullin3 (CUL3) lead to auti...
AbstractThe mammalian Cul4 genes, Cul4A and Cul4B, encode the scaffold components of the cullin-base...
Cullin-RING ligases (CRL) are ubiquitin E3 enzymes that bind substrates through variable substrate r...
Astrocytes are themost abundant cell type in themammalian brain and are important for the functions ...
Timely and efficient destruction of proteins in the cell is critical for its normal function. The ub...
CUL4B, encoding a scaffold protein for the assembly of Cullin4B-Ring ubiquitin ligase (CRL4B) comple...
AbstractTruncating or missense mutation of cullin 4B (CUL4B) is one of the most prevalent causes und...
AbstractCullin 4B (CUL4B) is a scaffold protein involved in the assembly of cullin-RING ubiquitin li...
We reevaluated a previously reported family with an X-linked mental retardation syndrome and attempt...
<div><p>Cullin-RING ligases (CRLs) complexes participate in the regulation of diverse cellular proce...
Cullin-RING ligases (CRLs) complexes participate in the regulation of diverse cellular processes, in...
Intellectual disability (ID), one of the most common human developmental disorders, can be caused by...
The evolutionarily conserved cullin family proteins can assemble as many as 400 distinct E3 ubiquiti...
Cullin-9 (CUL9) is a member of the Cullin ubiquitin ligase family strongly expressed in the brain. R...
Variants in cullin 4B (CUL4B) are a known cause of syndromic X-linked intellectual disability. Here,...
De novo loss of function mutations in the ubiquitin ligase-encoding gene Cullin3 (CUL3) lead to auti...
AbstractThe mammalian Cul4 genes, Cul4A and Cul4B, encode the scaffold components of the cullin-base...
Cullin-RING ligases (CRL) are ubiquitin E3 enzymes that bind substrates through variable substrate r...
Astrocytes are themost abundant cell type in themammalian brain and are important for the functions ...
Timely and efficient destruction of proteins in the cell is critical for its normal function. The ub...