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anti-Human Cyclin D3 Antibodies:
anti-Mouse (Murine) Cyclin D3 Antibodies:
anti-Rat (Rattus) Cyclin D3 Antibodies:
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Human Monoclonal Cyclin D3 Primary Antibody for FACS, IF - ABIN967432
Darzynkiewicz, Gong, Juan, Ardelt, Traganos: Cytometry of cyclin proteins. in Cytometry 1997
Show all 7 references for ABIN967432
Dog (Canine) Monoclonal Cyclin D3 Primary Antibody for IF, IP - ABIN967879
Bagui, Jackson, Agrawal, Pledger: Analysis of cyclin D3-cdk4 complexes in fibroblasts expressing and lacking p27(kip1) and p21(cip1). in Molecular and cellular biology 2000
Show all 5 references for ABIN967879
Human Polyclonal Cyclin D3 Primary Antibody for DB - ABIN1881179
Kim, Kim, Ko: CKbeta8/CCL23 and its isoform CKbeta8-1 induce up-regulation of cyclins via the G(i)/G(o) protein/PLC/PKCdelta/ERK leading to cell-cycle progression. in Cytokine 2010
Show all 4 references for ABIN1881179
Human Polyclonal Cyclin D3 Primary Antibody for DB - ABIN1881180
Gumina, Xu, Chiles: Cyclin D3 is dispensable for human diffuse large B-cell lymphoma survival and growth: evidence for redundancy with cyclin E. in Cell cycle (Georgetown, Tex.) 2010
Show all 4 references for ABIN1881180
Chicken Polyclonal Cyclin D3 Primary Antibody for IHC, WB - ABIN2792167
Pruneri, Valentini, Fabris, Del Curto, Laszlo, Bertolini, Martinelli, Leocata, Viale, Neri: Cyclin D3 immunoreactivity in follicular lymphoma is independent of the t(6;14)(p21.1;q32.3) translocation or cyclin D3 gene amplification and is correlated with histologic grade and Ki-67 labeling index. in International journal of cancer. Journal international du cancer 2004
Human Polyclonal Cyclin D3 Primary Antibody for IF (p) - ABIN892929
Souza, Silva, Calloway, Kucuk, Rossi, McLemore: Genistein protects hematopoietic stem cells against G-CSF-induced DNA damage. in Cancer prevention research (Philadelphia, Pa.) 2014
cyclin-D1 (show CCND1 Antibodies) and cyclin-D3 within human islet cells varies according to the status of the pancreas donor
The CDK6 (show CDK6 Antibodies)-cyclin D3 pair play a fundamental role in controlling CDK2 (show CDK2 Antibodies)-dependent SAMHD1 (show SAMHD1 Antibodies) phosphorylation and the dNTP pool in primary macrophages.
Two recurrent fusion genes associated with the 12q locus, LRP1 (show LRP1 Antibodies)-SNRNP25 (show SNRNP25 Antibodies) and KCNMB4 (show KCNMB4 Antibodies)-CCND3, were by RT-PCR, Sanger sequencing and FISH, and were found to be osteosarcoma specific in a validation cohort of 240 other sarcomas.
G1 arrest induced by SB265610 occurred at concentrations lacking CXCR2 (show CXCR2 Antibodies) selectivity and revealed cyclin-dependent kinase 2 (CDK2 (show CDK2 Antibodies)) (Thr160) hypophosphorylation, cyclin D3 gene down-regulation, and p21 (show CDKN1A Antibodies) post-translational induction
sLZIP regulates the transcription of cyclin D3 by binding directly to the AP-1 (show FOSB Antibodies) region in the cyclin D3 promoter.
combined expression of miR (show MLXIP Antibodies)-138 and its direct target CCND3 may be correlated with significant characteristics of hepatocellular carcinoma
Namely the amplification of the expression of the PLCB1a (show PLCB1 Antibodies), but not of PLCB1b (show PLCB1 Antibodies), is able to maintain high levels of expression of cyclin D3 even after treatment with kinamycin F
cell cycle related proteins PCNA (show PCNA Antibodies), Ki67 (show MKI67 Antibodies), cyclin D3, p27 (show PAK2 Antibodies) and p57 (show CDKN1C Antibodies) were expressed in both normal and diabetic human term placentas.
Post-transcriptional regulation of cyclins D1, D3 and G1 and proliferation of human cancer cells depend on IMP-3 (show IGF2BP3 Antibodies) nuclear localization.
two cell cycle-related molecules, cyclin D3 and E2F3, were identified as the direct miR (show MLXIP Antibodies)-503 targets.
The swine UCHL3 (show Uchl3 Antibodies), RIT1 (show RIT1 Antibodies) and CCND3 genes were found to be differentially expressed in tissues including small intestine, large intestine, liver, muscle, fat, lung, spleen and kidney.
we suggest that proper regional decidualization and polyploidy development requires FoxM1 (show FOXM1 Antibodies) signaling downstream of Hoxa10 (show HOXA10 Antibodies) and cyclin D3.
Cyclin D3 protein that drives immature T cell proliferation is essential for transformation of Atm (show ATM Antibodies)-deficient thymocytes
DYRK1A (show DYRK1A Antibodies) has a role in lymphopoiesis; Cyclin D3 protein stability is negatively regulated during exit from the proliferative phases of B and T cell development
inactivation of Ccnd3 leads to increased frequencies of lymphocytes with biallelic expression of IgH or TCRbeta genes.
FGF2 signaling results in the phosphorylation of Erk1/2, and activation of c-Fos and c-Jun that lead to elevated cyclin D mRNA levels.
Results indicate that cyclin D3 plays a cell-autonomous and nonredundant function in regulating the dynamic balance between proliferation, differentiation, and self-renewal that normally establishes an appropriate pool size of adult satellite cells.
Investigated the expression of GABA and GABPR in the early-pregnancy mouse uterus. Cyclin D3 was measured in cultured stromal cells artificially induced to undergo decidualization, by GABA and a GABA A-type receptor agonist or antagonist.
Subnuclear compartmentalization enables cyclin D3 to drive cell cycle progression and repress V gene accessibility, thereby ensuring coordination of proliferation with immunoglobulin recombination.
cyclin D3 expression influences a host of genes involved in decidualization and can improve decidualization in Hoxa-10 (show HOXA10 Antibodies)(-/-) mice.
CCND3 gene product cyclin D3 regulates the number of cell divisions that erythroid precursors undergo during terminal differentiation
The protein encoded by this gene belongs to the highly conserved cyclin family, whose members are characterized by a dramatic periodicity in protein abundance through the cell cycle. Cyclins function as regulators of CDK kinases. Different cyclins exhibit distinct expression and degradation patterns which contribute to the temporal coordination of each mitotic event. This cyclin forms a complex with and functions as a regulatory subunit of CDK4 or CDK6, whose activtiy is required for cell cycle G1/S transition. This protein has been shown to interact with and be involved in the phosphorylation of tumor suppressor protein Rb. The CDK4 activity associated with this cyclin was reported to be necessary for cell cycle progression through G2 phase into mitosis after UV radiation. Several transcript variants encoding different isoforms have been found for this gene.
, G1/S-specific cyclin-D3
, D3-type cyclin
, G1/S-specific cyclin D3