M/Z: 681.0789


Hit 0 annotations:  


在BioDeep NovoCell知识数据库中,参考离子总共被划分为4个级别。
  • Confirmed: 这个参考离子已经通过手动审计得到确认和验证。
  • Reliable: 这个参考离子可能在特定的解剖组织环境中高度保守。
  • Unreliable: 这个参考离子具有较高的排名价值,但缺乏可重复性。
  • Unavailable: 由于排名价值低且缺乏可重复性,这个参考离子不应用于注释。

Found 26 Reference Ions Near m/z 681.0789
NovoCell ID m/z Mass Window Metabolite Ranking Anatomy Context
MSI_000011159 Unreliable 681.0702 681.0702 ~ 681.0702
MzDiff: none
Not Annotated 1.88 (%) Mus musculus
[UBERON:0012378] muscle layer of urinary bladder
MSI_000011180 Unreliable 681.0769 681.0769 ~ 681.0769
MzDiff: none
Not Annotated 1.84 (%) Mus musculus
[UBERON:0012378] muscle layer of urinary bladder
MSI_000011183 Unreliable 681.0836 681.0836 ~ 681.0836
MzDiff: none
Not Annotated 1.83 (%) Mus musculus
[UBERON:0012378] muscle layer of urinary bladder
MSI_000054066 Unreliable 681.0882 681.0882 ~ 681.0884
MzDiff: 0.8 ppm
Not Annotated 3.49 (%) MALDI - CHCA
[NOVOCELL:BACKGROUND] blank
MSI_000054781 Unreliable 681.0796 681.0796 ~ 681.0796
MzDiff: none
Not Annotated 1.75 (%) MALDI - DHB
[NOVOCELL:BACKGROUND] blank
MSI_000010665 Unavailable 681.0875 681.0874 ~ 681.0875
MzDiff: 0.1 ppm
Cyclic diadenylate (BioDeep_00002053051)
Formula: C20H24N10O12P2 (658.105)
-2.42 (33%) Bathymodiolus
[UBERON:0009120] gill filament
MSI_000009431 Unavailable 681.0702 681.0702 ~ 681.0702
MzDiff: none
Not Annotated -0.41 (%) Mus musculus
[UBERON:0004645] urinary bladder urothelium
MSI_000009427 Unavailable 681.0769 681.0769 ~ 681.0769
MzDiff: none
Not Annotated -0.4 (%) Mus musculus
[UBERON:0004645] urinary bladder urothelium
MSI_000022155 Unreliable 681.0789 681.0789 ~ 681.0789
MzDiff: none
Not Annotated 0.4 (%) Mus musculus
[UBERON:0001499] muscle of arm
MSI_000009435 Unavailable 681.0836 681.0836 ~ 681.0836
MzDiff: none
Not Annotated -0.42 (%) Mus musculus
[UBERON:0004645] urinary bladder urothelium
MSI_000012141 Unavailable 681.0875 681.0875 ~ 681.0875
MzDiff: none
Not Annotated -0.95 (%) Bathymodiolus
[UBERON:2000211] gill lamella
MSI_000054610 Unreliable 681.088 681.088 ~ 681.088
MzDiff: none
Cyclic diadenylate (BioDeep_00002053051)
Formula: C20H24N10O12P2 (658.105)
1.91 (100%) MALDI - DHB
[NOVOCELL:BACKGROUND] blank
MSI_000000967 Unavailable 681.0702 681.0702 ~ 681.0702
MzDiff: none
Not Annotated -0.86 (%) Mus musculus
[CL:0000066] epithelial cell
MSI_000025102 Unreliable 681.0711 681.0711 ~ 681.0711
MzDiff: none
Not Annotated 1.72 (%) Mus musculus
[UBERON:0004269] upper arm connective tissue
MSI_000000960 Unavailable 681.0769 681.0769 ~ 681.0769
MzDiff: none
Not Annotated -0.86 (%) Mus musculus
[CL:0000066] epithelial cell
MSI_000023863 Unreliable 681.0789 681.0789 ~ 681.0789
MzDiff: none
Not Annotated 1.06 (%) Mus musculus
[UBERON:0004263] upper arm skin
MSI_000000961 Unavailable 681.0836 681.0836 ~ 681.0836
MzDiff: none
Not Annotated -0.86 (%) Mus musculus
[CL:0000066] epithelial cell
MSI_000025688 Unreliable 681.0856 681.0856 ~ 681.0856
MzDiff: none
Not Annotated 2.19 (%) Mus musculus
[UBERON:0000913] interstitial fluid
MSI_000004338 Unreliable 681.087 681.087 ~ 681.087
MzDiff: none
Not Annotated 0.75 (%) Homo sapiens
[UBERON:0002107] liver
MSI_000033555 Unreliable 681.087 681.087 ~ 681.087
MzDiff: none
Not Annotated 1.69 (%) Posidonia oceanica
[PO:0005352] xylem
MSI_000012764 Unavailable 681.0874 681.0874 ~ 681.0874
MzDiff: none
Not Annotated -0.45 (%) Plant
[PO:0005020] vascular bundle
MSI_000014232 Unavailable 681.0874 681.0874 ~ 681.0874
MzDiff: none
Not Annotated -0.41 (%) Plant
[PO:0005417] phloem
MSI_000014835 Unavailable 681.0874 681.0874 ~ 681.0874
MzDiff: none
Not Annotated -0.46 (%) Plant
[PO:0006036] root epidermis
MSI_000018221 Unreliable 681.0874 681.0874 ~ 681.0874
MzDiff: none
Not Annotated 1.79 (%) Plant
[PO:0020124] root stele
MSI_000019827 Unavailable 681.0874 681.0874 ~ 681.0874
MzDiff: none
Not Annotated -0.46 (%) Plant
[PO:0025197] stele
MSI_000040482 Unavailable 681.0882 681.0882 ~ 681.0882
MzDiff: none
Not Annotated -0.22 (%) Posidonia oceanica
[PO:0005417] phloem

Found 7 Sample Hits
Metabolite Species Sample
m/z_681.0769

Formula: - (n/a)
Adducts: (Ppm: )
Mus musculus (Urinary bladder)
HR2MSI_mouse_urinary_bladder - S096
Resolution: 10μm, 260x134

Description

Mass spectrometry imaging of phospholipids in mouse urinary bladder (imzML dataset)
The spatial distribution of phospholipids in a tissue section of mouse urinary bladder was analyzed by MALDI MS imaging at 10 micrometer pixel size with high mass resolution (using an LTQ Orbitrap mass spectrometer).

R, ö, mpp A, Guenther S, Schober Y, Schulz O, Takats Z, Kummer W, Spengler B, Histology by mass spectrometry: label-free tissue characterization obtained from high-accuracy bioanalytical imaging. Angew Chem Int Ed Engl, 49(22):3834-8(2010)

Fig. S2: Single ion images of compounds shown in Fig. 1A-B : (upper left to lower right) m/z = 743.5482 (unknown), m/z = 741.5307 (SM (16:0), [M+K]+), m/z = 798.5410 (PC (34:1), [M+K]+), m/z = 616.1767 (heme b, M+), m/z = 772.5253 (PC (32:0), [M+K]+).

Stability of determined mass values was in the range of +/- 1 ppm over 22 hours of measurement (Fig. S4), with a standard deviation of 0.56 ppm. Accuracy data were obtained during tissue scanning experiments by monitoring the mass signal at nominal mass 798. The internal lock mass function of the Orbitrap instrument was used for automatic calibration during imaging measurements, using the known matrix-related ion signals at m/z = 137.0233, m/z = 444.0925 and m/z = 716.1246.

m/z_681.0789

Formula: - (n/a)
Adducts: (Ppm: )
Mus musculus (Left upper arm)
357_l_total ion count
Resolution: 50μm, 97x131

Description

Diseased

m/z_681.0815

Formula: - (n/a)
Adducts: (Ppm: )
Mus musculus (Lung)
image3
Resolution: 40μm, 146x190

Description

Fig. 4 MALDI-MSI data of mouse lung tissue after administration with D9-choline and U13C-DPPC–containing Poractant alfa surfactant (labels administered 12 h prior to tissue collection). Ion images of (A) m/z 796.6856 ([U13C-DPPC+Na]+), (B) m/z 756.5154 [PC32:0+Na]+), and (C) m/z 765.6079 ([D9-PC32:0+Na]+). D: Overlay image of [U13C-PC32:0+Na]+ (red) and [D9-PC32:0+Na]+ (green). Part-per-million (ppm) mass errors are indicated in parentheses. All images were visualized using total-ion-current normalization and using hotspot removal (high quantile = 99%). DPPC = PC16:0/16:0. MSI, mass spectrometry imaging; PC, phosphatidylcholine; U13C-DPPC, universally 13C-labeled dipalmitoyl PC.

m/z_681.0796

Formula: - (n/a)
Adducts: (Ppm: )
Mus musculus (Lung)
image4
Resolution: 40μm, 162x156

Description

Fig 6c Fig. 6 MALDI-MSI of U13C-PC16:0/16:0 acyl chain remodeling. A: Averaged MALDI mass spectrum from lung tissue collected from mice euthanized 12 h after administration of D9-choline and U13C-DPPC–containing Poractant alfa surfactant. The ion at m/z 828.6321 is assigned as the [M+Na]+ ion of 13C24-PC16:0_20:4 formed by acyl remodeling of U13C-PC16:0/16:0. The “NL” value refers to the intensity of the base peak in the full range MS1 spectrum. B: MS/MS spectrum of precursor ions at m/z 828.5 ± 0.5 with fragment ions originating from [13C24-PC16:0_20:4+Na]+ annotated. Part-per-million (ppm) mass errors are provided in parentheses. C, D: MALDI-MSI data of [U13C-DPPC+Na]+ (blue), [PC36:4+Na]+ (green) and [13C24-PC16:0_20:4+Na]+ (red) in lung tissue collected from mice (C) 12 h and (D) 18 h after label administration. All images were visualized using total-ion-current normalization and hotspot removal (high quantile = 99%). MS/MS, tandem mass spectrometry; MSI, mass spectrometry imaging; PC, phosphatidylcholine; U13C-DPPC, universally 13C-labeled dipalmitoyl PC.

m/z_681.0805

Formula: - (n/a)
Adducts: (Ppm: )
Mus musculus (Lung)
image5
Resolution: 40μm, 163x183

Description

Supplementary Figure S8. MALDI-MSI data of mouse lung tissue administered with D9-choline and U 13C-DPPC–containing Poractant alfa surfactant (labels administered 18 h prior to sacrifice). Ion images of (a) m/z 796.6856 ([U13C-DPPC+Na]+), (b) m/z 756.5154 [PC32:0+Na]+ and (c) m/z 765.6079 ([D9-PC32:0+Na]+). (d) Overlay image of [U13C-DPPC+Na]+ (red) and [D9-PC32:0+Na]+ (green). Parts per million (ppm) mass errors are indicated in parentheses. All images were visualised using totalion-current normalisation and using hotspot removal (high quantile = 99%). DPPC = PC16:0/16:0.

m/z_681.0838

Formula: - (n/a)
Adducts: (Ppm: )
Mus musculus (Lung)
image2
Resolution: 40μm, 550x256

Description

Supplementary Figure S6. Ion distribution images for (a) [PC36:4+Na]+ (m/z 804.5514) and (b) [PC38:6+Na]+ (m/z 828.5515) obtained from mouse lung tissue collected 6 h after administration of D9- choline and U13C-DPPC–containing CHF5633. Parts-per-million (ppm) mass errors are indicated in parentheses. (c) Magnification of the boxed region in (a) with selected bronchiolar regions outlined in white boxes. (d) The corresponding H&E-stained tissue section with the same selected bronchiolar regions outlined in black boxes. These data demonstrate the co-localisation of the polyunsaturated lipids PC36:4 and PC38:6 with the bronchiolar regions of the lung. All MSI images were visualised using total ion current normalisation and hotspot removal (high quantile = 99%).

m/z_681.0866

Formula: - (n/a)
Adducts: (Ppm: )
Posidonia oceanica (root)
20190822_MS1_A19r-19
Resolution: 17μm, 303x309

Description

Seagrasses are among the most efficient sinks of carbon dioxide on Earth. While carbon sequestration in terrestrial plants is linked to the microorganisms living in their soils, the interactions of seagrasses with their rhizospheres are poorly understood. Here, we show that the seagrass, Posidonia oceanica excretes sugars, mainly sucrose, into its rhizosphere. These sugars accumulate to µM concentrations—nearly 80 times higher than previously observed in marine environments. This finding is unexpected as sugars are readily consumed by microorganisms. Our experiments indicated that under low oxygen conditions, phenolic compounds from P. oceanica inhibited microbial consumption of sucrose. Analyses of the rhizosphere community revealed that many microbes had the genes for degrading sucrose but these were only expressed by a few taxa that also expressed genes for degrading phenolics. Given that we observed high sucrose concentrations underneath three other species of marine plants, we predict that the presence of plant-produced phenolics under low oxygen conditions allows the accumulation of labile molecules across aquatic rhizospheres.