1
Return

Detection of a four-carbon sugar in interstellar space

delete2026-07-13
delete0
delete
OA
AI
I
Izaskun Jiménez-Serra *
J
Juan García de la Concepción
H
H. M. Cuppen
M
Marta Rey-Montejo
M
Miguel Sanz‐Novo
V
V. M. Rivilla
J
Jesús Martín-Pintado
A
Andrés Megías
C
Carlos Briones
D
David San Andrés
L
Laura Colzi
S
Shaoshan Zeng
S
S. Martín
J
Joseph Salaris
A
Antonio Martínez-Henares
Á
Álvaro López-Gallifa
M
Miguel Requena-Torres
B
B. Tercero
P
P. de Vicente
A
Aran Insausti
E
Elena R. Alonso
E
Emilio J. Cocinero
DOI:10.1038/s41550-026-02905-7delete
deleteOriginal
deleteShare
deleteSave
View PDF
Abstract

Abstract

En 中文
Sugars are essential biomolecules, serving as metabolic fuels, nucleic acid backbone components and structural or energy-storage polymers. A central question in origin-of-life research is how monosaccharides formed on the primitive Earth, as laboratory experiments under prebiotic conditions yield insufficient concentrations. The detection of ribose, glucose and other monosaccharides in asteroids and meteorites suggests an exogenous origin, possibly in the interstellar medium (ISM) before meteoritic parent-body formation. However, no sugar has been observed in the ISM so far. Here we report the discovery of erythrulose, a chiral four-carbon ketose, in the ISM. The detection was achieved through ultrasensitive, broadband spectral surveys of the Galactic Centre molecular cloud G+0.693−0.027, using the Yebes 40 m and IRAM 30 m telescopes. Erythrulose appears to be at least eight times more abundant than analogous three-carbon sugars, which remain undetected in our ultrasensitive observations. Quantum chemical and astrochemical models indicate that erythrulose forms efficiently on interstellar dust grains from simpler two-carbon aldehydes and alcohols. As ketoses readily isomerize into aldoses in aqueous conditions, interstellar erythrulose could have contributed to the sugar inventory available for early metabolic and replication processes. A monosaccharide sugar has been detected in an interstellar cloud: the chiral ketose erythrulose. Observations and chemical modelling show that it forms efficiently on dust grains, supporting an interstellar origin for prebiotic sugars linked to early life.
AI Summary

AI Summary

Key information extracted from the uploaded paper, including a brief overview, abstract, background, key highlights, visual analysis, and future outlook.

Journal

Nature Astronomy cover
Nature Astronomy
IF:
14.3
Papers:
2.8K
Citations:
1.3W

Organization

European Southern Observatory cover
European Southern Observatory
Scholars:
4.7K
Papers: 5.8K
Citations: 4.8K
C
csic
Scholars:
3.7K
Papers: 1.7K
Citations: 471
T
towson university
Scholars:
126
Papers: 85
Citations: 0
U
universidad de valladolid
Scholars:
1.1K
Papers: 491
Citations: 1
U
university of the basque country
Scholars:
959
Papers: 444
Citations: 0
O
Observatorio Astronomico Nacional
Scholars:
6
Papers: 4
Citations: 0
C
cluster for pioneering research
Scholars:
2
Papers: 1
Citations: 0
O
observatorio de yebes
Scholars:
2
Papers: 1
Citations: 0
R
radboud university
Scholars:
1.6K
Papers: 710
Citations: 1
U
University of Extremadura
Scholars:
338
Papers: 188
Citations: 0
Cited Papers

Cited Papers

Citing Papers

Citing Papers