The Prague Post - Nobel scientist uncovered tiny genetic switches with big potential

EUR -
AED 4.132449
AFN 72.015538
ALL 92.309179
AMD 407.495176
ANG 2.014593
AOA 1032.9717
ARS 1711.083477
AUD 1.611793
AWG 2.028248
AZN 1.91272
BAM 1.955107
BBD 2.263729
BDT 138.130275
BGN 1.894277
BHD 0.424272
BIF 3372.911079
BMD 1.125241
BND 1.437055
BOB 13.514033
BRL 5.606404
BSD 1.123967
BTN 108.310039
BWP 15.460798
BYN 3.45283
BYR 22054.731324
BZD 2.260269
CAD 1.599329
CDF 2607.750961
CHF 0.936747
CLF 0.027739
CLP 1095.298042
CNY 7.544297
CNH 7.542696
COP 3646.603543
CRC 514.538307
CUC 1.125241
CUP 26.973445
CVE 110.329513
CZK 24.408959
DJF 199.977786
DKK 7.475637
DOP 67.907993
DZD 151.365426
EGP 58.825935
ERN 16.878621
ETB 181.186409
FJD 2.528136
FKP 0.851372
GBP 0.848231
GEL 2.920031
GGP 0.851372
GHS 13.255322
GIP 0.851372
GMD 83.267555
GNF 9845.862125
GTQ 8.584531
GYD 235.13775
HKD 8.83095
HNL 30.190345
HRK 7.533152
HTG 147.174405
HUF 365.212288
IDR 20090.903781
ILS 3.425967
IMP 0.851372
INR 108.440357
IQD 1474.066226
IRR 1949086.881064
ISK 137.211859
JEP 0.851372
JMD 178.596734
JOD 0.797808
JPY 178.224773
KES 146.045309
KGS 98.402489
KHR 4571.295991
KMF 492.855143
KPW 1012.717612
KRW 1506.59684
KWD 0.348318
KYD 0.936585
KZT 507.249613
LAK 25295.426636
LBP 100821.629112
LKR 371.558379
LRD 192.41658
LSL 18.600035
LTL 3.322546
LVL 0.680647
LYD 7.235372
MAD 11.215846
MDL 20.056252
MGA 5007.324144
MKD 61.53133
MMK 2361.958371
MNT 4048.262059
MOP 9.085184
MRU 45.189561
MUR 53.347945
MVR 17.339672
MWK 1959.045035
MXN 20.222186
MYR 4.596726
MZN 71.901511
NAD 18.712504
NGN 1489.875559
NIO 41.262918
NOK 10.750809
NPR 173.300311
NZD 2.00179
OMR 0.432659
PAB 1.123892
PEN 3.877863
PGK 5.010711
PHP 70.601588
PKR 311.691677
PLN 4.372294
PYG 6584.667445
QAR 4.10004
RON 5.34805
RSD 117.413308
RUB 95.362922
RWF 1658.605815
SAR 4.216133
SBD 9.067804
SCR 15.7529
SDG 676.827686
SEK 11.252026
SGD 1.43794
SHP 0.851166
SLE 27.737647
SLL 23595.740277
SOS 643.076932
SRD 42.365658
STD 23290.225004
STN 25.00849
SVC 9.834084
SYP 14630.388892
SZL 18.712767
THB 37.841553
TJS 10.361991
TMT 3.949597
TND 3.369533
TOP 2.709311
TRY 55.360069
TTD 7.618369
TWD 35.773659
TZS 2959.388214
UAH 50.485259
UGX 4534.695876
USD 1.125241
UYU 45.351516
UZS 13266.596361
VES 979.274521
VND 29247.274315
VUV 135.339179
WST 3.131658
XAF 655.957
XAG 0.018348
XAU 0.000270222446
XCD 3.041021
XCG 2.025572
XDR 0.795604
XOF 655.957
XPF 119.331742
YER 265.838116
ZAR 18.612972
ZMK 10128.509703
ZMW 22.224831
ZWL 362.32727
SSP 6437.382096
MXV 2.2861
  • BCC

    0.6100

    75.45

    +0.81%

  • BTI

    0.1300

    53.01

    +0.25%

  • CMSD

    -0.1000

    20.33

    -0.49%

  • CMSC

    -0.1500

    20.12

    -0.75%

  • GSK

    0.0500

    46.6

    +0.11%

  • RBGPF

    1.1500

    64.05

    +1.8%

  • RIO

    0.2400

    95.89

    +0.25%

  • BCE

    0.0100

    19.75

    +0.05%

  • NGG

    0.8300

    76.85

    +1.08%

  • RELX

    0.2100

    34.03

    +0.62%

  • JRI

    -0.0200

    10.63

    -0.19%

  • BP

    0.3900

    45.01

    +0.87%

  • RYCEF

    -0.4000

    19.4

    -2.06%

  • VOD

    -0.2600

    16.53

    -1.57%

  • AZN

    2.0800

    158.61

    +1.31%

Nobel scientist uncovered tiny genetic switches with big potential
Nobel scientist uncovered tiny genetic switches with big potential / Photo: LAUREN OWENS LAMBERT - AFP

Nobel scientist uncovered tiny genetic switches with big potential

Harvard geneticist Gary Ruvkun vividly remembers the late-night phone call with his longtime friend and now 2024 Nobel Prize in Medicine co-laureate Victor Ambros, when they made their groundbreaking discovery of genetic switches that exist across the tree of life.

Text size:

It was the early 1990s. The pair, who had met a decade earlier and bonded over their fascination with an obscure species of roundworm, were exchanging datapoints at 11 pm -- one of the rare moments Ambros could steal away from tending to his newborn baby.

"It just fit together like puzzle pieces," Ruvkun told AFP in an interview from his home in a Boston suburb, shortly after learning of the award on Monday. "It was a eureka moment."

What they had uncovered was microRNA: tiny genetic molecules that act as key regulators of development in animals and plants, and hold the promise of breakthroughs in treating a wide range of diseases in the years ahead.

Although these molecules are only 22 "letters" long -- compared to the thousands of lines of code in regular protein-coding genes -- their small size belies their critical role as molecular gatekeepers.

"They turn off target genes," Ruvkun explained.

"It's a little bit like how astronomy starts with looking at the visible spectrum, and then people thought 'If we look with X rays, we can see much higher energy events,'" he added.

"We were looking at genetics at much smaller scales than it had been looked at before."

- Dismissed at first -

Their discovery had its roots in early investigations into C. elegans, a one-millimeter-long roundworm.

Ambros and Ruvkun were intrigued by the interplay between two genes that seemed to disrupt the worm's normal development -- causing them either to stay in a juvenile state or acquire adult features prematurely.

The genetic information contained in all our cells flows from DNA to messenger RNA (mRNA) through a process called transcription, and then on to the cellular machinery where it provides instructions on which proteins to create.

It's through this process, understood since the mid-20th century, that cells become specialized and carry out different functions.

But Ambros and Ruvkun, who began their work in the same lab before moving to different institutions, discovered a fundamentally new pathway for regulating gene activity through microRNAs, which control gene expression after transcription.

They published their findings in back-to-back papers in Cell in 1993, but at first, the discovery was dismissed as an esoteric detail, likely irrelevant to mammals.

"We were considered an oddity in the world of developmental biology," Ruvkun recalled. Even he had little idea their work would one day be celebrated by the wider scientific community.

That all changed in 2000 when Ruvkun's lab discovered another microRNA that was present throughout the tree of life -- from roundworms to mollusks, chickens, and humans.

- 'Celebrating like crazy' -

At the time, the human genome was still being mapped, but the portion that was complete was available to researchers.

"I think it was probably one-third done, and I could already see (the new microRNA) in that one-third of the human genome," said Ruvkun. "That was a surprise!"

Since then, the microRNA field has exploded, with more than 170,000 citations currently listed in biomedical literature.

More than 1,000 microRNAs have been identified in human DNA, and some are already being used to better understand tumor types and develop treatments for people with chronic lymphocytic leukemia.

Trials are also underway to develop microRNAs as treatments for heart disease.

On the morning of their Nobel win, the two old friends "Facetimed and high-fived," Ruvkun said. "It's magnificent, and we're going to be celebrating like crazy."

T.Kolar--TPP