The China Mail - Google unveils AI tool probing mysteries of human genome

USD -
AED 3.672503
AFN 65.999757
ALL 80.066009
AMD 364.517634
ANG 1.789783
AOA 918.000338
ARS 1487.947901
AUD 1.406183
AWG 1.8025
AZN 1.698816
BAM 1.689844
BBD 2.014455
BDT 122.025082
BGN 1.696366
BHD 0.377132
BIF 2989.065868
BMD 1
BND 1.278101
BOB 11.57661
BRL 5.206496
BSD 1.000186
BTN 95.649807
BWP 13.500717
BYN 3.042111
BYR 19600
BZD 2.011569
CAD 1.387345
CDF 2275.000169
CHF 0.812401
CLF 0.023268
CLP 915.750105
CNY 6.74065
CNH 6.745685
COP 3134.82
CRC 449.280935
CUC 1
CUP 26.5
CVE 95.270804
CZK 20.8858
DJF 178.103022
DKK 6.457903
DOP 58.753137
DZD 133.014967
EGP 50.530598
ERN 15
ETB 161.79626
EUR 0.86385
FJD 2.20565
FKP 0.73738
GBP 0.739335
GEL 2.588498
GGP 0.73738
GHS 11.052168
GIP 0.73738
GMD 73.513194
GNF 8786.186101
GTQ 7.629268
GYD 209.249883
HKD 7.84383
HNL 26.817351
HRK 6.508983
HTG 130.825457
HUF 314.653012
IDR 17862.65
ILS 2.991797
IMP 0.73738
INR 95.70625
IQD 1310.281367
IRR 1374549.999982
ISK 122.839826
JEP 0.73738
JMD 158.0373
JOD 0.709026
JPY 159.695501
KES 129.549762
KGS 87.449992
KHR 4046.067979
KMF 424.999754
KPW 900.000294
KRW 1410.145035
KWD 0.30881
KYD 0.833492
KZT 461.941214
LAK 22540.942885
LBP 89566.055097
LKR 331.989787
LRD 181.533065
LSL 16.225889
LTL 2.95274
LVL 0.60489
LYD 6.372987
MAD 9.293278
MDL 17.253028
MGA 4307.91296
MKD 53.154037
MMK 2099.801401
MNT 3596.870401
MOP 8.080213
MRU 40.113705
MUR 47.000279
MVR 15.45006
MWK 1734.288331
MXN 17.053497
MYR 4.059301
MZN 63.904984
NAD 16.225889
NGN 1350.529914
NIO 36.807113
NOK 9.418303
NPR 153.044147
NZD 1.699335
OMR 0.384503
PAB 1.000168
PEN 3.368628
PGK 4.494615
PHP 61.777507
PKR 277.579544
PLN 3.73103
PYG 6034.292824
QAR 3.656087
RON 4.530302
RSD 101.376045
RUB 85.148904
RWF 1473.708766
SAR 3.746587
SBD 8.032258
SCR 13.729242
SDG 601.502126
SEK 9.524385
SGD 1.27781
SHP 0.740866
SLE 24.575035
SLL 20969.499227
SOS 571.633467
SRD 37.7845
STD 20697.981008
STN 21.16841
SVC 8.751625
SYP 13001.999906
SZL 16.214138
THB 33.060499
TJS 9.241503
TMT 3.51
TND 2.92919
TOP 2.40776
TRY 47.919898
TTD 6.782414
TWD 31.906396
TZS 2649.917981
UAH 44.804538
UGX 3730.824229
UYU 40.349581
UZS 11822.340881
VES 771.57685
VND 26177
VUV 118.338592
WST 2.726312
XAF 566.740682
XAG 0.015376
XAU 0.000228
XCD 2.70255
XCG 1.802598
XDR 0.707052
XOF 566.75782
XPF 103.042635
YER 237.124967
ZAR 16.21969
ZMK 9001.228417
ZMW 18.677991
ZWL 321.999592
  • CMSC

    -0.0900

    21.36

    -0.42%

  • RYCEF

    0.2200

    21.06

    +1.04%

  • RBGPF

    -2.6900

    68.65

    -3.92%

  • RIO

    1.5300

    97.21

    +1.57%

  • RELX

    -0.8700

    33.56

    -2.59%

  • NGG

    0.2400

    81.29

    +0.3%

  • BCE

    -0.1200

    23.35

    -0.51%

  • VOD

    -0.2200

    16.2

    -1.36%

  • BTI

    -1.3300

    55.73

    -2.39%

  • GSK

    0.7600

    50.28

    +1.51%

  • CMSD

    -0.0328

    21.18

    -0.15%

  • BCC

    -1.3000

    81.94

    -1.59%

  • AZN

    0.4400

    156.89

    +0.28%

  • JRI

    -0.1300

    12.48

    -1.04%

  • BP

    0.3200

    42.85

    +0.75%

Google unveils AI tool probing mysteries of human genome
Google unveils AI tool probing mysteries of human genome / Photo: © AFP/File

Google unveils AI tool probing mysteries of human genome

Google unveiled an artificial intelligence tool Wednesday that its scientists said would help unravel the mysteries of the human genome -- and could one day lead to new treatments for diseases.

Text size:

The deep learning model AlphaGenome was hailed by outside researchers as a "breakthrough" that would let scientists study and even simulate the roots of difficult-to-treat genetic diseases.

While the first complete map of the human genome in 2003 "gave us the book of life, reading it remained a challenge", Pushmeet Kohli, vice president of research at Google DeepMind, told journalists.

"We have the text," he said, which is a sequence of three billion nucleotide pairs represented by the letters A, T, C and G that make up DNA.

However "understanding the grammar of this genome -- what is encoded in our DNA and how it governs life -- is the next critical frontier for research," said Kohli, co-author of a new study in the journal Nature.

Only around two percent of our DNA contains instructions for making proteins, which are the molecules that build and run the body.

The other 98 percent was long dismissed as "junk DNA" as scientists struggled to understand what it was for.

However this "non-coding DNA" is now believed to act like a conductor, directing how genetic information works in each of our cells.

These sequences also contain many variants that have been associated with diseases. It is these sequences that AlphaGenome is aiming to understand.

- A million letters -

The project is just one part of Google's AI-powered scientific work, which also includes AlphaFold, the winner of 2024's chemistry Nobel.

AlphaGenome's model was trained on data from public projects that measured non-coding DNA across hundreds of different cell and tissue types in humans and mice.

The tool is able to analyse long DNA sequences then predict how each nucleotide pair will influence different biological processes within the cell.

This includes whether genes start and stop and how much RNA -- molecules which transmit genetic instructions inside cells -- is produced.

Other models already exist that have a similar aim. However they have to compromise, either by analysing far shorter DNA sequences or decreasing how detailed their predictions are, known as resolution.

DeepMind scientist and lead study author Ziga Avsec said that long sequences -- up to a million DNA letters long -- were "required to understand the full regulatory environment of a single gene".

And the high resolution of the model allows scientists to study the impact of genetic variants by comparing the differences between mutated and non-mutated sequences.

"AlphaGenome can accelerate our understanding of the genome by helping to map where the functional elements are and what their roles are on a molecular level," study co-author Natasha Latysheva said.

The model has already been tested by 3,000 scientists across 160 countries and is open for anyone to use for non-commercial reasons, Google said.

"We hope researchers will extend it with more data," Kohli added.

- 'Breakthrough' -

Ben Lehner, a researcher at Cambridge University who was not involved in developing AlphaGenome but did test it, said the model "does indeed perform very well".

"Identifying the precise differences in our genomes that make us more or less likely to develop thousands of diseases is a key step towards developing better therapeutics," he explained.

However AlphaGenome "is far from perfect and there is still a lot of work to do", he added.

"AI models are only as good as the data used to train them" and the existing data is not very suitable, he said.

Robert Goldstone, head of genomics at the UK's Francis Crick Institute, cautioned that AlphaGenome was "not a magic bullet for all biological questions".

This was partly because "gene expression is influenced by complex environmental factors that the model cannot see", he said.

However the tool still represented a "breakthrough" that would allow scientists to "study and simulate the genetic roots of complex disease", Goldstone added.

O.Yip--ThChM