Recombinant rabbit monoclonal antibodies are produced using in vitro expression systems. The expression systems are developed by cloning in the specific antibody DNA sequences from immunoreactive rabbits. Then, individual clones are screened to select the best candidates for production. The advantages of using recombinant rabbit monoclonal antibodies include: better specificity and sensitivity, lot-to-lot consistency, animal origin-free formulations, and broader immunoreactivity to diverse targets due to larger rabbit immune repertoire.
SUMO1 is an ubiquitin-like protein that can be covalently attached to proteins as a monomer or a lysine-linked polymer. Covalent attachment, via an isopeptide bond, to its substrates requires prior activation by the E1 complex SAE1-SAE2 and linkage to the E2 enzyme UBE2I, and can be promoted by E3 ligases such as PIAS1-4, RANBP2 or CBX4. This post-translational modification on lysine residues of proteins plays a crucial role in a number of cellular processes such as nuclear transport, DNA replication and repair, mitosis and signal transduction. SUMO1 is involved, for instance, in targeting RANGAP1 to the nuclear pore complex protein RANBP2. Polymeric SUMO1 chains are also susceptible to polyubiquitination which functions as a signal for proteasomal degradation of modified proteins. SUMO1 may also regulate a network of genes involved in palate development. Mutations in the gene can result in non-syndromic orofacial cleft 10.
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Protein Aliases: GAP modifying protein 1; GAP-modifying protein 1; GMP1; Sentrin; Small ubiquitin-related modifier 1; small ubiquitin-related modifier-1; SMT3 homolog 3; SMT3 suppressor of mif two 3 homolog 1; Smt3C; SUMO-1; SUMO-1 related peptidase; Ubiquitin-homology domain protein PIC1; ubiquitin-like 1; ubiquitin-like 1 (sentrin); Ubiquitin-like protein SMT3C; Ubiquitin-like protein UBL1
Gene Aliases: DAP1; GMP1; OFC10; OK/SW-cl.43; PIC1; SENP2; SENTRIN; SMT3; SMT3C; SMT3H3; SMTP3; SUMO-1; SUMO1; UBL1