| Gene information | Literature | Expression | lncRNA | Mutation | Homolog |
Basic Information | |
|---|---|
Gene ID | 4791 |
Name | NFKB2 |
Synonymous | nuclear factor of kappa light polypeptide gene enhancer in B-cells 2 (p49/p100);NFKB2;nuclear factor of kappa light polypeptide gene enhancer in B-cells 2 (p49/p100) |
Definition | DNA-binding factor KBF2|NFKB, p52/p100 subunit|lymphocyte translocation chromosome 10 protein|nuclear factor Kappa-B, subunit 2|nuclear factor NF-kappa-B p100 subunit|nuclear factor NF-kappa-B p52 subunit|nuclear factor of Kappa light chain gene enhancer |
Position | 10q24 |
Gene type | protein-coding |
Title | Abstract |
| B cell lymphoma-associated chromosomal translocation involves candidate oncogene lyt-10, homologous to NF-kappa B p50. | A B cell lymphoma-associated chromosomal translocation, t(10;14)(q24;q32), juxtaposes the immunoglobulin C alpha 1 locus to a novel gene, lyt-10. The normal lyt-10 cDNA codes for a 98 kd protein which displays amino-terminal homology with the rel (DNA-binding) domain of the NF-kappa B-rel family of transcription factors and carboxy-terminal homology with the NF-kappa B p50 precursor protein, including the putative proteolytic cleavage domain (poly-G) and the ankyrin-like repeat domains. The lyt-10 protein can bind to kappa B sequences in vitro, although with different specificity from NF-kappa B p50, and in vitro DNA-binding is activated by removal of the ankyrin domain. Chromosomal translocation generates an lyt-10-C alpha 1 fusion gene coding for a protein that retains the rel effector domain, lacks the ankyrin regulatory domain, and binds kappa B sequences in vitro, suggesting its constitutive activation in vivo. Analogous rearrangements of the lyt-10 gene have been found in an additional three cases of lymphoid neoplasia. The lyt-10 gene defines a new subfamily (rel/poly-G/ankyrin) of NF-kappa B-rel transcription factors with potential for oncogenic activation in human cancer. |
| Mechanism of expression and role in transcriptional control of the proto-oncogene NFKB-2/LYT-10. | The NFKB-2 gene (previously LYT-10, NF-kappa Bp100 or NF-kappa Bp97) codes for a NF-kappa B/rel related protein which is highly homologous to NFKB-1 (previously NF-kappa Bp105) within its rel, poly-glycine and ankyrin domains. The NFKB-2 gene is a candidate proto-oncogene since it is involved in lymphoma-associated chromosomal aberrations. In order to gain insight into the physiological function and role in tumorigenesis of NFKB-2, we have analysed its mechanism of expression and role in transcriptional regulation. We report that, contrary to previous studies, a single 3.2 kb mRNA species and its 100 kD (p100) primary translation product is detectable in ALL cell types tested. A second NFKB-2 protein, p52, corresponding to the amino-terminal half (rel domain) of NFKB-2 p100, is detectable in the same cell types and derives from the post-translational processing of p100. While p100 is constitutively localized in the cytoplasm, NF-kappa B induction by TPA treatment of Hela cells is associated with cytoplasmic/nuclear translocation of NFKB-2 p52 and its appearance within DNA-binding NF-kappa B complexes. NFKB-2 p52 differs from NFKB-1p50 in its differential affinity for kappa B sequences: by itself it binds H2/HLA-kappa B sites more efficiently than HIV/IgK-kappa B sites, while it can bind both sites efficiently when complexed with Rel-A(p65). Transient co-transfection of expression and reporter plasmids in cells devoid of endogenous NF-kappa B activity showed that p52 has no intrinsic transcriptional activation capabilities: it can stimulate Rel-A(p65)-driven transcription by formation of p65/p52 heterodimers, whereas, overexpressed, it down-regulates p65-dependent transcription by formation of inactive p52/p52 homodimers. These results indicate that the NFKB-2 gene codes for an inducible NF-kappa B transcription factor with the capability of differentially regulating NF-kappa B transcription depending on its abundance in the nucleus. |
| The involvement of the candidate proto-oncogene NFKB2/lyt-10 in lymphoid malignancies. | NF-kappa B transcription factors regulate the expression of a variety of genes involved in immune responses and cell growth. In higher vertebrates, the NF-kappa B family encompasses five distinct members. Three NF-kappa B proteins, p65/RelA, RelB, and c-rel/Rel, have high transactivating potential in addition to their DNA binding activity. Two subunits, NF-kappa B1p50 and NF-kappa B2p52, coded respectively by the NFKB1 and NFKB2 genes, may only have DNA binding activity. Moreover, p50 and p52 subunits are translated as precursors, respectively p105 and p100, which can be processed into the mature active forms by the removal of their carboxy-terminal ankyrin domain. The five proteins share a homologous amino-terminal domain (rel domain) involved in DNA binding, dimerization, nuclear transport, and binding of regulatory subunits. ALL members form homo- and heterodimeric complexes with different DNA binding specificity and transactivating potential. Structural alterations of some members of the NF-kappa B gene family have been observed in lymphoid malignancies. In particular, the NFKB2 gene, localized on chromosome 10q24, represents a candidate proto-oncogene, since it has been found rearranged in certain types of lymphoma and more commonly in cutaneous lymphoma. Molecular analysis indicated that these rearrangements may occur as a consequence of chromosomal translocations or small internal chromosomal deletions. Rearrangements cluster within the carboxy-terminal ankyrin domain of the NFKB2 gene leading to the production of carboxy-terminally truncated proteins which, in some cases, are fused to heterologous protein domains. Experimental data showed that these abnormal proteins are constitutively localized in the nucleus, have lost the transcriptional repressor functions typical of normal NF-kappa B2p52 and may be capable of transactivation activity. These findings suggest that abnormal NFKB2 proteins may contribute to lymphomagenesis by altering the NF-kappa B system, both quantitatively and qualitatively, and leading to the activation of specific subsets of kappa B-controlled genes. |
| Interleukin-1 increases expression of the LYT-10 (NFkappaB2) proto-oncogene/transcription factor in renal cell carcinoma lines. | The LYT-10 gene was initially cloned by virtue of its disruption by the translocation breakpoint in some t(10;14) lymphoid neoplasms. LYT-10 is now known to encode a component of the NF-kappaB family of transcriptional activators and has therefore also been designated NFkappaB2. Activation of NF-kappaB is generally associated with its transfer to the nucleus and is followed by a rapid increase in expression of its target genes, which include cytokines such as interleukin-6 (IL-6). IL-6 can also be induced by other transcription factors such as NF-IL6. We studied the interaction of IL-1 and these transcription factors in two renal cell carcinoma cell lines (ACHN and Caki-1). These lines produce high levels of IL-6, show endogenous chloramphenicol acetyltransferase activity for the IL-6 promoter, and have high basal levels of transcripts encoding the NF-kappaB components Lyt-10, p50, and p65 as well as the NF-IL6 transcription factor. IL-1alpha and IL-1beta markedly increased steady-state levels of LYT-10 (NFkappaB2) transcripts and nuclear Lyt-10 protein in both cell lines. Levels of the NFkappaB1 (p50-encoding), p65, and NF-IL6 transcripts also increased after IL-1 exposure. These changes were accompanied by a 20-fold or greater increase in levels of IL-6 messenger ribonucleic acid (mRNA) and protein. Our observations suggest that the mechanism by which IL-1alpha or IL-1beta induces IL-6 may be mediated through increases in LYT-10 mRNA and protein levels as well as increases in expression of other transcription factors (NFkappaB1, p65, and NF-IL6), in addition to the known ability of IL-1 to post-translationally activate NF-kappaB. |