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IMMUNE CELL MONOCYTES Show tissue menu
B-CELLS DENDRITIC CELLS GRANULOCYTES MONOCYTES NK-CELLS PROGENITORS T-CELLS TOTAL PBMC
Immune cell proteome
Monocytes
MONOCYTES - Expression summary
Protein profiling
Multiplex tissuei

A summary of the protein localization in the current human tissue based on multiplex immunohistochemistry profiling in selected tissues is shown for genes where this analysis has been performed.

Protein expressioni

On the top, protein expression in current human tissue, based on all annotated cell types, is reported with the units not detected (n), low (l), medium (m) and high (h). Underneath, protein expression in each annotated cell type are reported using the same units.

Protein expression data is based on knowledge-based annotation. For genes where more than one antibody has been used, a collective score is set.

If knowledge-based annotation could not be performed for a gene, no data is displayed here. View antibody staining data further down this page.

Read more
No data
RNA expressioni

A summary of mRNA expression data available for current tissue based on several datasets. The mRNA expression levels in human tissues are based on RNA-seq data generated by the Human Protein Atlas (HPA), Genotype-Tissue Expression (GTEx) portal and CAGE data generated by the FANTOM5 consortium. Consensus normalized expression levels for human tissues was created by combining the data from HPA and GTEx datasets.

The mRNA expression levels in pig are based on RNA-seq data generated by the Human Protein Atlas (HPA), and for mouse, HPA data and in situ hybridization generated by the Allen brain atlas are reported.

Scroll down to view mRNA expression data in more detail.
Read more
HPA:27.8 nTPM
Monaco:57.1 nTPM
Schmiedel:17.6 TPM

MONOCYTES - HPA RNA-seqi

The RNA-seq details section shows detailed information about the individual samples used for the transcript profiling and results of the RNA-seq analysis.

Information about each individual sample is listed below. nTPM (normalized transcripts per million) values give a quantification of the gene abundance which is comparable between different genes and samples. Distribution across the dataset is visualized with box plots, shown as median and 25th and 75th percentiles. Points are displayed as outliers if they are above or below 1.5 times the interquartile range. nTPM values of the individual samples are presented next to the box plot.
Read more
Max nTPM 27.8
HPA sample nTPM
Classical monocyte
nTPM: 17.1
Samples: 6

Max nTPM: 18.8
Min nTPM: 14.7
P10809_1003 17.5
P10809_1020 18.8
P10809_1039 18.6
P10809_1058 14.7
P10809_1080 17.5
P10809_1107 15.3
Intermediate monocyte
nTPM: 25.5
Samples: 6

Max nTPM: 32.7
Min nTPM: 15.8
P10809_1004 32.7
P10809_1023 28.3
P10809_1042 28.3
P10809_1061 15.8
P10809_1081 22.2
P10809_1108 25.6
Non-classical monocyte
nTPM: 27.8
Samples: 5

Max nTPM: 40.7
Min nTPM: 17.9
P10809_1005 26.6
P10809_1053 29.6
P10809_1072 40.7
P10809_1082 17.9
P10809_1109 24.2

MONOCYTES - Monaco RNA-seqi

RNA-Seq data generated by Monaco et al is reported as average nTPM.

The RNA-seq details section shows detailed information about the individual samples used for the transcript profiling and results of the RNA-seq analysis.

Information about each individual sample is listed below. nTPM (normalized transcripts per million) values give a quantification of the gene abundance which is comparable between different genes and samples. Distribution across the dataset is visualized with box plots, shown as median and 25th and 75th percentiles. Points are displayed as outliers if they are above or below 1.5 times the interquartile range. nTPM values of the individual samples are presented next to the box plot.

Read more
Max nTPM 57.1
Monaco sample nTPM
Classical monocyte
nTPM: 47.2
Samples: 4

Max nTPM: 60.4
Min nTPM: 37.1
RHH5313_R3680 60.4
RHH5221_R3593 37.1
RHH5250_R3622 42.3
RHH5279_R3651 48.9
Intermediate monocyte
nTPM: 47.7
Samples: 4

Max nTPM: 56.1
Min nTPM: 39.7
RHH5314_R3681 56.1
RHH5222_R3594 39.7
RHH5251_R3623 50.0
RHH5280_R3652 45.1
Non-classical monocyte
nTPM: 57.1
Samples: 4

Max nTPM: 64.5
Min nTPM: 44.3
RHH5315_R3682 56.5
RHH5223_R3595 44.3
RHH5252_R3624 62.9
RHH5281_R3653 64.5

MONOCYTES - Schmiedel RNA-seqi

RNA-Seq data generated by Schmiedel et al is reported as average TPM.

The RNA-seq details section shows detailed information about the individual samples used for the transcript profiling and results of the RNA-seq analysis.

Information about each individual sample is listed below. TPM (transcripts per million) values give a quantification of the gene abundance which is comparable between different genes and samples. Distribution across the dataset is visualized with box plots, shown as median and 25th and 75th percentiles. Points are displayed as outliers if they are above or below 1.5 times the interquartile range. TPM values of the individual samples are presented next to the box plot.

Read more
Max TPM 17.6
Schmiedel sample id TPM
Classical monocyte
TPM: 10.9
Samples: 106

Max TPM: 14.3
Min TPM: 6.9
MONOCYTES_1 14.3
MONOCYTES_2 14.2
MONOCYTES_3 14.2
MONOCYTES_4 14.2
MONOCYTES_5 14.1
MONOCYTES_6 13.7
MONOCYTES_7 13.6
MONOCYTES_8 13.6
MONOCYTES_9 13.5
MONOCYTES_10 13.4
MONOCYTES_11 13.3
MONOCYTES_12 13.3
MONOCYTES_13 13.3
MONOCYTES_14 13.1
MONOCYTES_15 13.1
MONOCYTES_16 13.1
MONOCYTES_17 13.1
MONOCYTES_18 13.0
MONOCYTES_19 12.9
MONOCYTES_20 12.6
MONOCYTES_21 12.6
MONOCYTES_22 12.6
MONOCYTES_23 12.6
MONOCYTES_24 12.5
MONOCYTES_25 12.5
MONOCYTES_26 12.5
MONOCYTES_27 12.5
MONOCYTES_28 12.4
MONOCYTES_29 12.3
MONOCYTES_30 12.2
MONOCYTES_31 12.2
MONOCYTES_32 12.2
MONOCYTES_33 12.1
MONOCYTES_34 12.0
MONOCYTES_35 11.9
MONOCYTES_36 11.9
MONOCYTES_37 11.8
MONOCYTES_38 11.7
MONOCYTES_39 11.6
MONOCYTES_40 11.6
MONOCYTES_41 11.6
MONOCYTES_42 11.5
MONOCYTES_43 11.4
MONOCYTES_44 11.3
MONOCYTES_45 11.2
MONOCYTES_46 11.1
MONOCYTES_47 11.1
MONOCYTES_48 11.1
MONOCYTES_49 11.0
MONOCYTES_50 11.0
MONOCYTES_51 11.0
MONOCYTES_52 11.0
MONOCYTES_53 10.8
MONOCYTES_54 10.7
MONOCYTES_55 10.7
MONOCYTES_56 10.7
MONOCYTES_57 10.7
MONOCYTES_58 10.7
MONOCYTES_59 10.7
MONOCYTES_60 10.6
MONOCYTES_61 10.6
MONOCYTES_62 10.6
MONOCYTES_63 10.6
MONOCYTES_64 10.4
MONOCYTES_65 10.4
MONOCYTES_66 10.3
MONOCYTES_67 10.1
MONOCYTES_68 10.1
MONOCYTES_69 10.0
MONOCYTES_70 10.0
MONOCYTES_71 9.9
MONOCYTES_72 9.9
MONOCYTES_73 9.8
MONOCYTES_74 9.7
MONOCYTES_75 9.7
MONOCYTES_76 9.6
MONOCYTES_77 9.6
MONOCYTES_78 9.6
MONOCYTES_79 9.6
MONOCYTES_80 9.5
MONOCYTES_81 9.5
MONOCYTES_82 9.5
MONOCYTES_83 9.4
MONOCYTES_84 9.4
MONOCYTES_85 9.3
MONOCYTES_86 9.2
MONOCYTES_87 9.2
MONOCYTES_88 9.1
MONOCYTES_89 8.9
MONOCYTES_90 8.9
MONOCYTES_91 8.8
MONOCYTES_92 8.8
MONOCYTES_93 8.7
MONOCYTES_94 8.7
MONOCYTES_95 8.6
MONOCYTES_96 8.2
MONOCYTES_97 8.2
MONOCYTES_98 8.0
MONOCYTES_99 8.0
MONOCYTES_100 8.0
MONOCYTES_101 7.8
MONOCYTES_102 7.6
MONOCYTES_103 7.5
MONOCYTES_104 7.4
MONOCYTES_105 7.4
MONOCYTES_106 6.9
Show allShow less
Non-classical monocyte
TPM: 17.6
Samples: 105

Max TPM: 24.0
Min TPM: 12.3
M2_1 24.0
M2_2 23.4
M2_3 23.1
M2_4 22.6
M2_5 22.3
M2_6 22.3
M2_7 22.2
M2_8 21.9
M2_9 21.2
M2_10 21.1
M2_11 21.1
M2_12 21.0
M2_13 20.7
M2_14 20.6
M2_15 20.6
M2_16 20.4
M2_17 20.3
M2_18 20.2
M2_19 20.1
M2_20 20.1
M2_21 20.0
M2_22 19.9
M2_23 19.9
M2_24 19.8
M2_25 19.7
M2_26 19.7
M2_27 19.7
M2_28 19.7
M2_29 19.4
M2_30 19.4
M2_31 19.3
M2_32 19.3
M2_33 19.3
M2_34 19.3
M2_35 19.3
M2_36 19.2
M2_37 19.1
M2_38 18.8
M2_39 18.8
M2_40 18.7
M2_41 18.6
M2_42 18.5
M2_43 18.5
M2_44 18.5
M2_45 18.4
M2_46 18.4
M2_47 18.3
M2_48 18.1
M2_49 17.9
M2_50 17.6
M2_51 17.5
M2_52 17.4
M2_53 17.3
M2_54 17.3
M2_55 17.2
M2_56 17.2
M2_57 17.2
M2_58 17.0
M2_59 17.0
M2_60 17.0
M2_61 17.0
M2_62 16.8
M2_63 16.7
M2_64 16.4
M2_65 16.4
M2_66 16.4
M2_67 16.4
M2_68 16.2
M2_69 16.2
M2_70 16.2
M2_71 16.0
M2_72 15.9
M2_73 15.8
M2_74 15.7
M2_75 15.7
M2_76 15.7
M2_77 15.6
M2_78 15.4
M2_79 15.4
M2_80 15.4
M2_81 15.3
M2_82 15.3
M2_83 15.2
M2_84 15.1
M2_85 15.0
M2_86 15.0
M2_87 14.9
M2_88 14.9
M2_89 14.9
M2_90 14.9
M2_91 14.4
M2_92 14.3
M2_93 14.1
M2_94 14.1
M2_95 14.1
M2_96 14.0
M2_97 13.7
M2_98 13.6
M2_99 13.6
M2_100 13.5
M2_101 13.3
M2_102 12.9
M2_103 12.6
M2_104 12.6
M2_105 12.3
Show allShow less

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The Human Protein Atlas project is funded
by the Knut & Alice Wallenberg Foundation.