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H3C1

Histones are basic nuclear proteins that are responsible for the nucleosome structure of the chromosomal fiber in eukaryotes. This structure consists of approximately 146 bp of DNA wrapped around a nucleosome, an octamer composed of pairs of each of the four core histones (H2A, H2B, H3, and H4). The chromatin fiber is further compacted through the interaction of a linker histone, H1, with the DNA between the nucleosomes to form higher order chromatin structures. This gene is intronless and encodes a replication-dependent histone that is a member of the histone H3 family. Transcripts from this gene lack polyA tails; instead, they contain a palindromic termination element. This gene is found in the large histone gene cluster on chromosome 6p22-p21.3.
Full Name
H3 clustered histone 1
Function
Core component of nucleosome. Nucleosomes wrap and compact DNA into chromatin, limiting DNA accessibility to the cellular machineries which require DNA as a template. Histones thereby play a central role in transcription regulation, DNA repair, DNA replication and chromosomal stability. DNA accessibility is regulated via a complex set of post-translational modifications of histones, also called histone code, and nucleosome remodeling.
Biological Process
DNA replication-dependent nucleosome assembly Source: UniProtKB
Nucleosome assembly Source: UniProtKB
Regulation of gene silencing Source: BHF-UCL
Telomere organization Source: BHF-UCL
Cellular Location
Nucleus; Chromosome
Involvement in disease
Glioma (GLM):
The gene represented in this entry is involved in disease pathogenesis. HIST1H3B mutations affecting residue Lys-28 involved in post-translational modifications of histone H3.1 are recurrent in malignant, aggressive gliomas including pediatric non-brain stem glioblastoma and diffuse intrinsic pontine glioma (DIPG) (PubMed:22286216). The mechanism through which mutations lead to tumorigenesis involves altered histone methylation, impaired regulation of Polycomb repressive complex 2 (PRC2) activity, and aberrant epigenetic regulation of gene expression (PubMed:23603901). Gliomas are benign or malignant central nervous system neoplasms derived from glial cells. They comprise astrocytomas and glioblastoma multiforme that are derived from astrocytes, oligodendrogliomas derived from oligodendrocytes and ependymomas derived from ependymocytes.
HIST1H3B or HIST1H3C mutations affecting residue Lys-37 of histone H3.1 are involved in the pathogenesis of pediatric undifferentiated soft tissue sarcomas. The mechanism through which mutations lead to tumorigenesis involves altered histones methylation with gain of global H3K27 methylation, altered Polycomb repressive complex 1 (PRC1) activity, aberrant epigenetic regulation of gene expression and impaired differentiation of mesenchimal progenitor cells.
PTM
Acetylation is generally linked to gene activation. Acetylation on Lys-10 (H3K9ac) impairs methylation at Arg-9 (H3R8me2s). Acetylation on Lys-19 (H3K18ac) and Lys-24 (H3K24ac) favors methylation at Arg-18 (H3R17me). Acetylation at Lys-123 (H3K122ac) by EP300/p300 plays a central role in chromatin structure: localizes at the surface of the histone octamer and stimulates transcription, possibly by promoting nucleosome instability.
Citrullination at Arg-9 (H3R8ci) and/or Arg-18 (H3R17ci) by PADI4 impairs methylation and represses transcription.
Asymmetric dimethylation at Arg-18 (H3R17me2a) by CARM1 is linked to gene activation. Symmetric dimethylation at Arg-9 (H3R8me2s) by PRMT5 is linked to gene repression. Asymmetric dimethylation at Arg-3 (H3R2me2a) by PRMT6 is linked to gene repression and is mutually exclusive with H3 Lys-5 methylation (H3K4me2 and H3K4me3). H3R2me2a is present at the 3' of genes regardless of their transcription state and is enriched on inactive promoters, while it is absent on active promoters.
Methylation at Lys-5 (H3K4me), Lys-37 (H3K36me) and Lys-80 (H3K79me) are linked to gene activation. Methylation at Lys-5 (H3K4me) facilitates subsequent acetylation of H3 and H4. Methylation at Lys-80 (H3K79me) is associated with DNA double-strand break (DSB) responses and is a specific target for TP53BP1. Methylation at Lys-10 (H3K9me) and Lys-28 (H3K27me) are linked to gene repression. Methylation at Lys-10 (H3K9me) is a specific target for HP1 proteins (CBX1, CBX3 and CBX5) and prevents subsequent phosphorylation at Ser-11 (H3S10ph) and acetylation of H3 and H4. Methylation at Lys-5 (H3K4me) and Lys-80 (H3K79me) require preliminary monoubiquitination of H2B at 'Lys-120'. Methylation at Lys-10 (H3K9me) and Lys-28 (H3K27me) are enriched in inactive X chromosome chromatin. Monomethylation at Lys-57 (H3K56me1) by EHMT2/G9A in G1 phase promotes interaction with PCNA and is required for DNA replication.
Phosphorylated at Thr-4 (H3T3ph) by HASPIN during prophase and dephosphorylated during anaphase. Phosphorylation at Ser-11 (H3S10ph) by AURKB is crucial for chromosome condensation and cell-cycle progression during mitosis and meiosis. In addition phosphorylation at Ser-11 (H3S10ph) by RPS6KA4 and RPS6KA5 is important during interphase because it enables the transcription of genes following external stimulation, like mitogens, stress, growth factors or UV irradiation and result in the activation of genes, such as c-fos and c-jun. Phosphorylation at Ser-11 (H3S10ph), which is linked to gene activation, prevents methylation at Lys-10 (H3K9me) but facilitates acetylation of H3 and H4. Phosphorylation at Ser-11 (H3S10ph) by AURKB mediates the dissociation of HP1 proteins (CBX1, CBX3 and CBX5) from heterochromatin. Phosphorylation at Ser-11 (H3S10ph) is also an essential regulatory mechanism for neoplastic cell transformation. Phosphorylated at Ser-29 (H3S28ph) by MAP3K20 isoform 1, RPS6KA5 or AURKB during mitosis or upon ultraviolet B irradiation. Phosphorylation at Thr-7 (H3T6ph) by PRKCB is a specific tag for epigenetic transcriptional activation that prevents demethylation of Lys-5 (H3K4me) by LSD1/KDM1A. At centromeres, specifically phosphorylated at Thr-12 (H3T11ph) from prophase to early anaphase, by DAPK3 and PKN1. Phosphorylation at Thr-12 (H3T11ph) by PKN1 is a specific tag for epigenetic transcriptional activation that promotes demethylation of Lys-10 (H3K9me) by KDM4C/JMJD2C. Phosphorylation at Thr-12 (H3T11ph) by chromatin-associated CHEK1 regulates the transcription of cell cycle regulatory genes by modulating acetylation of Lys-10 (H3K9ac). Phosphorylation at Tyr-42 (H3Y41ph) by JAK2 promotes exclusion of CBX5 (HP1 alpha) from chromatin.
Monoubiquitinated by RAG1 in lymphoid cells, monoubiquitination is required for V(D)J recombination (By similarity). Ubiquitinated by the CUL4-DDB-RBX1 complex in response to ultraviolet irradiation. This may weaken the interaction between histones and DNA and facilitate DNA accessibility to repair proteins.
Lysine deamination at Lys-5 (H3K4all) to form allysine is mediated by LOXL2. Allysine formation by LOXL2 only takes place on H3K4me3 and results in gene repression.
Crotonylation (Kcr) is specifically present in male germ cells and marks testis-specific genes in post-meiotic cells, including X-linked genes that escape sex chromosome inactivation in haploid cells. Crotonylation marks active promoters and enhancers and confers resistance to transcriptional repressors. It is also associated with post-meiotically activated genes on autosomes.
Butyrylation of histones marks active promoters and competes with histone acetylation. It is present during late spermatogenesis.
Succinylation at Lys-80 (H3K79succ) by KAT2A takes place with a maximum frequency around the transcription start sites of genes (PubMed:29211711). It gives a specific tag for epigenetic transcription activation (PubMed:29211711). Desuccinylation at Lys-123 (H3K122succ) by SIRT7 in response to DNA damage promotes chromatin condensation and double-strand breaks (DSBs) repair (PubMed:27436229).
Serine ADP-ribosylation constitutes the primary form of ADP-ribosylation of proteins in response to DNA damage (PubMed:30257210). Serine ADP-ribosylation at Ser-11 (H3S10ADPr) is mutually exclusive with phosphorylation at Ser-11 (H3S10ph) and impairs acetylation at Lys-10 (H3K9ac) (PubMed:30257210).
Serotonylated by TGM2 at Gln-6 (H3Q5ser) during serotonergic neuron differentiation (PubMed:30867594). H3Q5ser is associated with trimethylation of Lys-5 (H3K4me3) and enhances general transcription factor IID (TFIID) complex-binding to H3K4me3, thereby facilitating transcription (PubMed:30867594).
Dopaminylated by TGM2 at Gln-6 (H3Q5dop) in ventral tegmental area (VTA) neurons (PubMed:32273471). H3Q5dop mediates neurotransmission-independent role of nuclear dopamine by regulating relapse-related transcriptional plasticity in the reward system (By similarity).
Lactylated in macrophages by EP300/P300 by using lactoyl-CoA directly derived from endogenous or exogenous lactate, leading to stimulates gene transcription.

Anti-H3C1 antibodies

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Target: H3C1
Host: Mouse
Antibody Isotype: IgG
Specificity: Zebrafish
Clone: CB389A
Application*: ELISA, WB
Target: H3C1
Host: Mouse
Antibody Isotype: IgG
Specificity: Human, Mouse, Rat
Clone: CB387A
Application*: ELISA, WB
Target: H3C1
Host: Mouse
Antibody Isotype: IgG
Specificity: Human, Mouse, Rat
Clone: CB386A
Application*: ELISA, WB
Target: H3C1
Host: Mouse
Antibody Isotype: IgG
Specificity: Human, Mouse, Rat
Clone: CB244A
Application*: ELISA, WB
Target: H3C1
Host: Mouse
Antibody Isotype: IgG
Specificity: Human, Mouse, Rat
Clone: CB243A
Application*: ELISA, WB
Target: H3C1
Host: Mouse
Antibody Isotype: IgG
Specificity: Human, Mouse, Rat
Clone: CB242A
Application*: ELISA, WB
Target: H3C1
Host: Mouse
Antibody Isotype: IgG
Specificity: Human, Mouse, Rat
Clone: CB241A
Application*: ELISA, WB
Target: H3C1
Host: Mouse
Antibody Isotype: IgG
Specificity: Human, Mouse, Rat
Clone: CB240A
Application*: ELISA, WB
Target: H3C1
Host: Mouse
Antibody Isotype: IgG
Specificity: Human, Mouse, Rat
Clone: CB239A
Application*: ELISA, WB, IP
Target: H3C1
Host: Mouse
Antibody Isotype: IgG
Specificity: Human, Mouse, Rat
Clone: CB238A
Application*: ELISA, WB
Target: H3C1
Host: Mouse
Antibody Isotype: IgG
Specificity: Human, Mouse, Rat
Clone: CB236A
Application*: ELISA, WB
Target: H3C1
Host: Mouse
Antibody Isotype: IgG
Specificity: Human, Mouse, Rat
Clone: CB233A
Application*: ELISA, WB
Target: H3C1
Host: Mouse
Antibody Isotype: IgG
Specificity: Human, Mouse, Rat
Clone: CB232A
Application*: ELISA, WB
Target: H3C1
Host: Mouse
Antibody Isotype: IgG
Specificity: Human, Mouse, Rat
Clone: CB229A
Application*: ELISA, WB
Target: H3C1
Host: Mouse
Antibody Isotype: IgG
Specificity: Human, Mouse, Rat
Clone: CB227A
Application*: ELISA, WB
Target: H3C1
Host: Mouse
Antibody Isotype: IgG
Specificity: Human, Mouse, Rat, Yeast
Clone: CB219A
Application*: ELISA, WB, IF, IP
Target: H3C1
Host: Mouse
Antibody Isotype: IgG
Specificity: Human, Mouse, Rat
Clone: CB168A
Application*: ELISA, WB
Target: H3C1
Host: Mouse
Antibody Isotype: IgG
Specificity: Human, Mouse, Rat
Clone: CB166A
Application*: ELISA, WB
Target: H3C1
Host: Mouse
Antibody Isotype: IgG1
Specificity: Human, Mouse, Rat
Clone: CBHb351
Application*: IF, IP, WB
Target: H3C1
Host: Rabbit
Antibody Isotype: IgG
Specificity: Human
Clone: CBNH-145
Application*: E, WB, ICC, IF
Target: H3C1
Host: Rabbit
Antibody Isotype: IgG
Specificity: Human
Clone: CBNH-119
Application*: E, WB, ICC, IF
Target: H3C1
Host: Rabbit
Antibody Isotype: IgG
Specificity: Human
Clone: CBNH-118
Application*: E, WB, ICC, IF
Target: H3C1
Host: Rabbit
Antibody Isotype: IgG
Specificity: Human, Mouse
Clone: CBNH-117
Application*: E, WB
Target: H3C1
Host: Rabbit
Antibody Isotype: IgG
Specificity: Human
Clone: CBNH-116
Application*: E, WB, ICC, IF
Target: H3C1
Host: Rabbit
Antibody Isotype: IgG
Specificity: Human
Clone: CBNH-115
Application*: E, WB, ICC, IF
Target: H3C1
Host: Rabbit
Antibody Isotype: IgG
Specificity: Human, Rat
Clone: CBNH-113
Application*: E
Target: H3C1
Host: Rabbit
Antibody Isotype: IgG
Specificity: Human
Clone: CBNH-112
Application*: E
Target: H3C1
Host: Rabbit
Antibody Isotype: IgG
Specificity: Human
Clone: CBNH-110
Application*: E, WB, IF
Target: H3C1
Host: Rabbit
Antibody Isotype: IgG
Specificity: Human, Mouse
Clone: CBNH-109
Application*: E, WB, ICC, IF, F
Target: H3C1
Host: Rabbit
Antibody Isotype: IgG
Specificity: Human
Clone: CBNH-106
Application*: E, WB, ICC, IF
Target: H3C1
Host: Rabbit
Antibody Isotype: IgG
Specificity: Human
Clone: CBNH-105
Application*: E, WB, ICC, IF
Target: H3C1
Host: Rabbit
Antibody Isotype: IgG
Specificity: Human, Rat
Clone: CBNH-104
Application*: E, WB, ICC, IF
Target: H3C1
Host: Rabbit
Antibody Isotype: IgG
Specificity: Human
Clone: CBNH-066
Application*: E, WB, IH, IF, F
Target: H3C1
Host: Mouse
Antibody Isotype: IgG1
Specificity: Human, Mouse, Rat
Clone: CBYJT-1371
Application*: WB, IF, IC
Target: H3C1
Host: Mouse
Antibody Isotype: IgG1
Specificity: Human, Cattle
Clone: CBYJT-1370
Application*: CI, DB, E, WB
Target: H3C1
Host: Rabbit
Antibody Isotype: IgG
Specificity: Human
Clone: CBYJT-1369
Application*: CI, F, PA, WB
Target: H3C1
Host: Rabbit
Antibody Isotype: IgG
Specificity: Human
Clone: CBYJT-1367
Application*: WB, E, IH
Target: H3C1
Host: Rabbit
Antibody Isotype: IgG
Specificity: Human
Clone: CBYJT-1366
Application*: WB, E, CI
Target: H3C1
Host: Rabbit
Antibody Isotype: IgG
Specificity: Human
Clone: CBYJT-1365
Application*: WB, E
Target: H3C1
Host: Mouse
Antibody Isotype: IgG2a
Specificity: Human, Rat, Mouse
Clone: CBFYM-1129
Application*: IH, WB
Target: H3C1
Host: Mouse
Antibody Isotype: IgG2b
Specificity: Human
Clone: CBFYM-1128
Application*: IH
Target: H3C1
Host: Rabbit
Antibody Isotype: IgG
Specificity: Mouse
Clone: CBFYH-3568
Application*: E, IC, WB
Target: H3C1
Host: Rabbit
Antibody Isotype: IgG
Specificity: Human
Clone: CBFYH-1185
Application*: E, WB
Target: H3C1
Host: Rabbit
Antibody Isotype: IgG
Specificity: Human
Clone: CBFYH-1184
Application*: E, WB
Target: H3C1
Host: Mouse
Antibody Isotype: IgG1
Specificity: Human, Mouse, Rat
Clone: CBFYH-1182
Application*: WB
Target: H3C1
Host: Mouse
Antibody Isotype: IgG
Specificity: Human, Rat
Clone: CBFYH-1180
Application*: WB, IP
Target: H3C1
Host: Mouse
Antibody Isotype: IgG
Specificity: Human, Rat
Clone: CBFYH-1179
Application*: WB
Target: H3C1
Host: Mouse
Antibody Isotype: IgG
Specificity: Human, Mouse, Rat, Yeast
Clone: CBFYH-1178
Application*: WB, IF, IP
Target: H3C1
Host: Mouse
Antibody Isotype: IgG
Specificity: Human, Mouse, Rat
Clone: CBFYH-1177
Application*: WB
Target: H3C1
Host: Mouse
Antibody Isotype: IgG1
Specificity: Human, Mouse, Rat
Clone: CBFYH-1175
Application*: WB, P
Target: H3C1
Host: Rabbit
Antibody Isotype: IgG
Specificity: Human
Clone: CBFYH-1174
Application*: WB
Target: H3C1
Host: Mouse
Antibody Isotype: IgM
Specificity: Human, Mouse
Clone: 865R2
Application*: F, IC, IF, WB
Target: H3C1
Host: Mouse
Antibody Isotype: IgG1
Specificity: Human, Rat
Clone: CBFYH-3081
Application*: E, WB
Target: H3C1
Host: Rabbit
Antibody Isotype: IgG
Specificity: Human, Mouse, Rat
Clone: CBFYH-3080
Application*: CI, E, IC, IF, WB
Target: H3C1
Host: Mouse
Antibody Isotype: IgG1
Specificity: Human
Clone: CBFYH-3079
Application*: IF, IP, WB
Target: H3C1
Host: Rabbit
Antibody Isotype: IgG
Specificity: Human, Rat
Clone: 17H2L9
Application*: F, IC, IF, WB
Target: H3C1
Host: Mouse
Antibody Isotype: IgG2b
Specificity: Human
Application*: CI, IC, IF, WB
Target: H3C1
Host: Mouse
Antibody Isotype: IgG1
Specificity: Human
Application*: CI, IC, IF, WB
Target: H3C1
Host: Rabbit
Antibody Isotype: IgG
Specificity: Human, Mouse, Rat
Application*: WB, IH, IF
Target: H3C1
Host: Mouse
Antibody Isotype: IgG2b
Specificity: Human
Clone: SB190a
Application*: FC, IH, IC, WB, IP, E
Target: H3C1
Host: Mouse
Antibody Isotype: IgG1
Specificity: Human
Clone: SB157a
Application*: IH, IC, WB, E
Target: H3C1
Host: Mouse
Antibody Isotype: IgG2b
Specificity: Human
Clone: SB147d
Application*: FC, IH, IC, WB, IP, E
Target: H3C1
Host: Rabbit
Antibody Isotype: IgG
Specificity: Human
Clone: RM179
Application*: CI, E, IC, IF, IH, WB
Target: H3C1
Host: Rabbit
Antibody Isotype: IgG
Specificity: Human
Clone: RM172
Application*: CI, E, IC, IF, IH, WB
Target: H3C1
Host: Rabbit
Antibody Isotype: IgG
Specificity: Human
Clone: RM169
Application*: E, IC, IF, WB
Target: H3C1
Host: Rabbit
Antibody Isotype: IgG
Specificity: Human
Clone: RM166
Application*: CI, E, IC, IF, IH, WB
Target: H3C1
Host: Rabbit
Antibody Isotype: IgG
Specificity: Human
Clone: RM163
Application*: E, IC/IF, WB
Target: H3C1
Host: Rabbit
Antibody Isotype: IgG
Specificity: Human
Clone: RM156
Application*: CI, E, IC, IF, WB
Target: H3C1
Host: Rabbit
Antibody Isotype: IgG
Specificity: Human
Clone: RM154
Application*: E, IC, IF, WB
Target: H3C1
Host: Rabbit
Antibody Isotype: IgG
Specificity: Human
Clone: RM149
Application*: E, IC, IF, WB
Target: H3C1
Host: Rabbit
Antibody Isotype: IgG
Specificity: Human
Clone: RM130
Application*: CI, E, IC, IF, WB
Target: H3C1
Host: Rabbit
Antibody Isotype: IgG
Specificity: C.elegans, Human, Mouse, Rat, Yeast, Zebrafish
Clone: J.924.2
Application*: CI, FC, IC, IF, P, IP, WB
Target: H3C1
Host: Mouse
Antibody Isotype: IgG1
Specificity: Human, Rat
Clone: GT921
Application*: IC/IF, P, WB
Target: H3C1
Host: Rabbit
Antibody Isotype: IgG
Specificity: Human, Mouse, Rat, Monkey, Hamster, Frog, Zebrafish, Pig
Clone: D9T5Q
Application*: IF, FC
Target: H3C1
Host: Rabbit
Antibody Isotype: IgG
Specificity: Human, Mouse, Rat, Hamster, Zebrafish
Clone: D6Y7M
Application*: WB
Target: H3C1
Host: Rabbit
Antibody Isotype: IgG
Specificity: Human, Mouse, Rat, Monkey, Hamster, Chicken, Frog, Zebrafish, Cattle
Clone: D5A7
Application*: FC
Target: H3C1
Host: Rabbit
Antibody Isotype: IgG
Specificity: Human, Mouse, Rat, Monkey, Chicken, Frog, Zebrafish, Cattle, Pig, Yeast, C.el
Clone: D54
Application*: WB, IP, IF, FC, CI
Target: H3C1
Host: Mouse
Antibody Isotype: IgG1
Specificity: Human, Rat
Clone: 921
Application*: WB, IH, IC/IF, P
Target: H3C1
Host: Rabbit
Antibody Isotype: IgG
Specificity: Human, Mouse, Rat
Clone: 2HCLC
Application*: CI, E, FC, IC, IF, WB
Target: H3C1
Host: Rabbit
Antibody Isotype: IgG
Specificity: Human, Drosophila, Rat
Clone: 17H12L11
Application*: CI, FC, IC, IF, WB
Target: H3C1
Host: Rabbit
Antibody Isotype: IgG
Specificity: Human, Mouse, Rat, Monkey, Hamster, Xenopus, Yeast
Clone: D7N8E
Application*: WB, IP, IF, FC, CI
Target: H3C1
Host: Rabbit
Antibody Isotype: IgG
Specificity: Human, Mouse, Rat, Monkey, Hamster, Xenopus, Zebrafish, GP
Clone: D5E4
Application*: WB, IF, FC, CI
Target: H3C1
Host: Rabbit
Antibody Isotype: IgG
Specificity: Human, Mouse, Rat, Monkey, Hamster, Xenopus, Zebrafish, Pig, Yeast
Clone: D4B9
Application*: WB, IP, IF, CI
Target: H3C1
Host: Rabbit
Antibody Isotype: IgG
Specificity: Human, Mouse, Rat, Monkey, Zebrafish
Clone: D2C8
Application*: WB, IF, FC
Target: H3C1
Host: Rabbit
Antibody Isotype: IgG
Specificity: Human, Mouse, Rat, Monkey, Frog, Zebrafish
Clone: C36B11
Application*: WB
Target: H3C1
Host: Mouse
Antibody Isotype: IgG1
Specificity: Human, Mouse, Rat
Clone: 6G3
Application*: WB, IF, IF, FC
Target: H3C1
Host: Rat
Antibody Isotype: IgG2a, κ
Specificity: Human
Clone: 5D10D4
Application*: IS
Target: H3C1
Host: Rabbit
Antibody Isotype: IgG
Specificity: Human
Clone: RM192
Application*: WB, E, IH/IC
For Research Use Only. Not For Clinical Use.
(P): Predicted
* Abbreviations
IFImmunofluorescence
IHImmunohistochemistry
IPImmunoprecipitation
WBWestern Blot
EELISA
MMicroarray
CIChromatin Immunoprecipitation
FFlow Cytometry
FNFunction Assay
IDImmunodiffusion
RRadioimmunoassay
TCTissue Culture
GSGel Supershift
NNeutralization
BBlocking
AActivation
IInhibition
DDepletion
ESELISpot
DBDot Blot
MCMass Cytometry/CyTOF
CTCytotoxicity
SStimulation
AGAgonist
APApoptosis
IMImmunomicroscopy
BABioassay
CSCostimulation
EMElectron Microscopy
IEImmunoelectrophoresis
PAPeptide Array
ICImmunocytochemistry
PEPeptide ELISA
MDMeDIP
SHIn situ hybridization
IAEnzyme Immunoassay
SEsandwich ELISA
PLProximity Ligation Assay
ECELISA(Cap)
EDELISA(Det)
BIBioimaging
IOImmunoassay
LFLateral Flow Immunoassay
LALuminex Assay
CImmunohistochemistry-Frozen Sections
PImmunohistologyp-Paraffin Sections
ISIntracellular Staining for Flow Cytometry
MSElectrophoretic Mobility Shift Assay
RIRNA Binding Protein Immunoprecipitation (RIP)
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