Showing posts with label Nobel Prize in Chemistry. Show all posts
Showing posts with label Nobel Prize in Chemistry. Show all posts

Wednesday, October 10, 2012

2012 Nobel Prize in Chemistry goes to Robert and Brian

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This is an X-ray crystal structure depicting the ß2 adrenergic receptor (green) with its G protein, a heterotrimer called Gs (yellow, blue, purple). The complex is stabilized by a llama antibody (red) and the enzyme T4 lysozyme (magenta).
 
An X-ray crystal structure depicts the ß2 adrenergic receptor (green) with its G protein, a heterotrimer called Gs (yellow, blue, and purple). The complex is stabilized by a llama antibody (red) and the enzyme T4 lysozyme (magenta).
Credit: Nature
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This is a mug of Robert Lefkowitz of Duke University Medical Center and HHMI.
 
Lefkowitz
Credit: Stewart Waller/PR Newswire/HHMI
Robert J. Lefkowitz, 69, and Brian K. Kobilka, 57, will take home this year’s Nobel Prize in Chemistry for unraveling the molecular workings of G-protein-coupled receptors (GPCRs). The receptors are a family of proteins that transmit critical biological messages for functions such as vision, smell, taste, and neurotransmission.
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This is a mug of Brian Kobilka of Stanford University.
 
Kobilka
Credit: Stanford U
Lefkowitz and Kobilka’s discoveries also laid the foundation for aflurry of structures of GPCRs solved over the past five years, the Nobel committee said at an Oct. 10 press conference. Those structures explain at atomic-level detail how the receptors, which always wind back and forth seven times through cell membranes, transmit messages.
GPCRs “are crucially positioned to regulate almost every known physiological process in humans,” Lefkowitz, a Howard Hughes Medical Institute investigator based at Duke University Medical Center, said by phone at the press conference. For decades, researchers knew that hormones such as adrenaline outside cells led to changes inside cells. But the exact nature of this chemical signaling was a mystery. Lefkowitz first traced this signaling with radioactive blocking agents. Eventually, his team managed to pluck GPCRs—including the receptor for adrenaline, the β-adrenergic receptor—out of the tissues where they had always been studied.
Kobilka, now at Stanford University School of Medicine, was a postdoc in Lefkowitz’ lab in the 1980s, when the lab was hunting for the gene encoding the β-adrenergic receptor. When Kobilka finally isolated the gene, he realized the receptor comprised seven helices, just like rhodopsin, which resides in the retina and responds to light. The Lefkowitz team realized that a large family of seven-helix receptors must exist. “Lefkowitz and Kobilka have helped us understand the molecular details of cellular signaling,” says American Chemical Society President Bassam Z. Shakhashiri. “It is helping chemists create new medicines that will benefit society.”
GPCRs are targets for as many as 50% of prescription medicines on the market, but many of those drugs, such as beta-blockers, date to long before the prizewinning discoveries. “Chemists made early GPCR drugs by just making molecules related to natural hormones or neurotransmitters,” says Fiona H. Marshall, chief scientific officer of Heptares Therapeutics, a firm that specializes in GPCR drug discovery. Lefkowitz and Kobilka’s work allows medicinal chemists to understand better the proteins they are targeting as they go about designing new drugs, she adds. Although the Nobel committee pointed to Kobilka’s more recent research achievements, including the first X-ray crystal structure of a GPCR bound to its signaling partner, “this Nobel Prize is not just about the GPCR structure,” Marshall says. “That was the icing on the cake at the end.”
Lefkowitz and Kobilka will split the $1.2 million prize, which Lefkowitz said he didn’t anticipate. “I can assure you I did not go to sleep last night waiting for this call.” His original plan for the day, he said, included getting a haircut.
 
Chemical & Engineering News
ISSN 0009-2347
Copyright © 2012 American Chemical Society
http://cen.acs.org/articles/90/web/2012/10/Robert-Lefkowitz-Brian-Kobilka-Share.html

Monday, October 8, 2012

Watch Nobel Prize in Chemistry 2012 Live on NepaChem

This is the time for the announcement of the 2012 Nobel prizes. Today Nobel Prize in Physiology or Medicine was announced. The 2012 Nobel Prize in Physiology or Medicine was awarded jointly to John B. Gurdon and Shinya Yamanaka "for the discovery that mature cells can be reprogrammed to become pluripotent". Lets congratulate both scientists for their achievement.

The 2012 Nobel Prize in Physics will be announced tomorrow. And, the day after tomorrow (10/10/12)  the same prize in Chemistry will be announced. You can watch the ceremony live here.



Friday, September 23, 2011

Winners of 2011 Nobel Prize in Chemistry: Predictions!!

Time is coming soon to see a list of new names for Nobel prize. The Nobel Prize in Chemistry will be announced on Wednesday 5 October, 11:45 a.m. CET, 9:45 a.m. GMT, according to Nobel.org.


But who will win this time? Lets see the names predicted by thomsonreuters.com for Chemistry.



  • Allen J. Bard 
    University of Texas at Austin, Austin TX USA 
    WHY: for the development and application of scanning electrochemical microscopy
  • Jean M. J. Fréchet 
    Department of Chemistry, University of California Berkeley, Berkeley CA USA, and Vice President of Research, King Abdullah University of Science and Technology, Thuwal, Kingdom of Saudi Arabia 
    WHY: with Donald A. Tomalia and Fritz Vögtle, for the invention and development of dendritic polymers
  • Martin Karplus 
    Harvard University, Louis Pasteur University, Strasbourg, France 
    WHY: for pioneering simulations of the molecular dynamics of biomolecules
  • Donald A. Tomalia 
    Central Michigan University, Mount Pleasant, MI USA 
    WHY: with Jean M. J. Fréchet and Fritz Vögtle, for the invention and development of dendritic polymers
  • Joseph P. Vacanti 
    Harvard Medical School
    WHY: with Robert S. Langer, for their pioneering research in tissue engineering and regenerative medicine
  • Fritz Vögtle 
    University of Bonn, Bonn Germany 
    WHY: with Jean M. J. Fréchet and Donald A. Tomalia, for the invention and development of dendritic polymers.
  • Share your thoughts!!!What do you think?

Monday, April 11, 2011

Chemistry Matters: Beauty

From molecules to equations to experiments, learn how and why chemistry is beautiful to Nobel Laureates. This video is one in a series of four, short educational videos capturing 16 Nobel Laureates' opinions on why chemistry matters. 

Tuesday, March 22, 2011

Chemistry Beyond the Textbook: 16 Nobel Laureates Speak

Learn about chemistry's many facets as explained by Nobel Laureates and discover why would one claim that chemistry is the 'queen of all sciences'. This video is one in a series of four, short educational videos capturing 16 Nobel Laureates' opinions on why chemistry matters.

Saturday, February 26, 2011

The Life of a Chemist: Chemistry Matters to Everyone


On the occasion of Internal Year of Chemistry (IYC 2011), Nobel organization has produced four short videos related to chemistry specially designed for students aspiring to a career in chemistry. In all the videos called "Chemistry Matters", 16 Nobel Laureates discuss new frontiers in their field and explore what life as a chemist entails. They also describe the beauty inherent in chemistry and recall the eureka moments when they discovered 'a little of nature's logic'.


In this video, they focus on the Life of a Chemist. Being a student of chemistry, one plans to spend his/her life as a chemist. Chemistry really matters to everyones life, the way we want to have our life. Watch the video below and know how all Chemistry Noble laureates spend their life on regular basis. 


Wednesday, October 6, 2010

Purdue Chemistry Family Celebrated The Nobel Prize

Hari Khatri, PhD Student at Department of Chemistry, Purdue University

Prof Negishi with a glass of drink in the program
We organized a program to celebrate The Nobel in Chemistry 2010. Professor Ei-ichi Negishi   in our department has shared 2010 Nobel prize in Chemistry with two other chemistry professors. Chemistry students, faculties and staffs were on the program to listen his valuable words. I was so excited to hear this news this morning. Since morning   Purdue chemistry students and faculties were excited to congratulate and honor the great Nobel laureate, Negishi. Of course it was the one of the greatest opportunity to congratulate their own mentor/teacher at the same department. The short honoring celebration was held at 4:00 pm on the behalf of Chemistry department. 








with Nobel Laureate today
Prof Negishi's contribution in chemistry is the palladium-catalyzed cross-coupling, that allows for easy and efficient synthesis of complex organic compounds that have had an enormous impact on the manufacture of medicines and other products. The Nobel Prize was bestowed primarily on the strength of 10 seminal papers published from 1976 to 1978, said Negishi, who came to Purdue in 1966 as a postdoctoral researcher under the late Herbert C. Brown, who won the Nobel Prize in 1979. Negishi has discovered catalytic reactions using a number of transition metals that allow various organic compounds to be synthesized widely, efficiently and selectively for use in fields ranging from medicine to materials development. His work has resulted in dramatically reducing the cost of using such metals, like palladium, in the synthesis. Personally, Professor Negishi is a intriguing mentor and teacher among students who always encourages his students to creative thinking in the field of organic chemistry.


Prof Negishi's contribution to science

Prof  Negishi is the third Nobel laureate from Purdue university (H. CBrown, chemistry 1979, Kevin Gurney, Nobel Peace Prize in 2007, and Ei-ichi Negishi, Chemistry 2010). 

Below are two small video clips recorded by myself. Video quality is not very good.
 Part 1
Part 2



Tuesday, October 5, 2010

What is Graphene? This years Nobel in Physics Goes to Graphene

Graphene is made of carbon atoms arranged in a honeycomb pattern, forming a single layer so thin that it’s nearly see-through. 

The 2010 Nobel Prize in Physics has been awarded to University of Manchester physicists Andre Geim and Konstantin Novoselov who performed the first experiments on graphene, a two-dimensional sheet of carbon atoms. 

In the video, Profesor explains some basics about graphene.


In the second video watch an interview with one of the Nobel Prize Physics winner

The Nobel Prize in Chemistry to be Announced on Wednesday 9.45am GMT

The Nobel Prize in Chemistry for 2010 will be announced on Thursday 7 October, 11:00 a.m. GMT by Swedish Academy, Stockholm, Sweden. 

You can watch the live webcast from the Royal Swedish Academy of Sciences, Stockholm, Sweden, on Wednesday 6 October, 11:45 a.m. CET, 9:45 a.m. GMT, at the earliest (3:45am MT, 5.45am ET, 4:45CT in the USA). Following the announcement, an interview will be held with one of the Nobel Committee members about the 2010 Nobel Prize in Chemistry.


Watch it live below.



 


2010 Nobel in Physics has been awarded to Andre Geim and Konstantin Novoselov for the study of graphene and 2010 Nobel in Medicine has been awarded to Robert G. Edwards "for the development of in vitro fertilization".

Wednesday, October 7, 2009

2009 Nobel Prize in Chemistry announced

Indian born Scientist shares Nobel in Chemistry with 2 other Scientists.

Nobel prize in chemistry for this year of 2009 has been awarded to Venkatraman Ramakrishnan (MRC Laboratory of Molecular Biology Cambridge, United Kingdom-born in India), Thomas A. Steitz (Yale University New Haven, CT, USA; Howard Hughes Medical Institute) and Ada E. Yonath (Weizmann Institute of Science Rehovot, Israel)"for studies of the structure and function of the ribosome". Royal Swedish Academy of Sciences in Stockholm announced in a press conference web-casted live. Three scientists will share the prize equally.


This is the 101st Nobel prize in chemistry since it was started in 1901. It was Alfred Nobel's wish to award to “the person who shall have made the most important chemical discovery or improvement”.

Science is changed a lot since Nobel prize started. Chemistry back in 1900 is different from chemistry now. So the question has raised whether Nobel Prize in chemistry is still relevant to this time? There are some arguments about Nobel given to chemistry. There is an in-depth analysis about this issue in Analytical Chemistry. If you are interested, here is the link. http://pubs.acs.org/doi/full/10.1021/ac9018457

P.S.: Linus Pauling, a Oregon State University graduate, had received Nobel prize two times. One for chemistry and next for peace. Proud to be at OSU.

Tuesday, October 6, 2009

Nobel Prize in Chemistry to be announced tomorrow!!

Time has again come to announce the most prestigious awards in the world-the Nobel Prize. October is the month to announce most anticipated prizes. Two (Nobel for medicine and physics) prizes have been already given for this year of 2009. Nobel in physics has been awarded for groundbreaking achievements concerning the transmission of light in fibers for optical communication (to Charles K. Kao-1/2 of the money) and for the invention of an imaging semiconductor circuit – the CCD sensor (Willard S. Boyle and George E. Smith-each will receive 1/4th of the money). Whereas Nobel for Medicine or physiology went for the discovery of how chromosomes are protected by telomeres and the enzyme telomerase to Elizabeth H. Blackburn, Carol W. Greider and Jack W. Szostak. It is interesting to note that the discoveries made both in physics and medicine were couple of decades back.




Nobel prize in chemistry will be announced tomorrow-Wednesday, October 7, 2009) at 11.45AM CET, 9.45AM GMT, 2.45AM PST (west coast of the USA) and 3.30PM Nepal time during a press conference at the Royal Swedish Academy of Sciences in Stockholm. The announcement is web cast live at Nobelprize.org


The Nobel Prize in Chemistry had been awarded 100 times to 154 Nobel Laureates between 1901 and 2008. A total of 153 individuals have received the Nobel Prize in Chemistry. You can see the list of chemistry Nobel laureates here.

Last years Nobel in Chemistry was awarded for the discovery of green fluorescent protein.

Lets wait and see who will grab this years chemistry Nobel.

Wednesday, October 8, 2008

Green fluorescent protein (GFP) earns Nobel Prize in Chemistry

Nobel prize in chemistry for 2008 has been recently announced. Three scientists will share the prize equally. They are working on the development and research of green fluorescent protein. Science reporter of BBC news, Jonathan Amos writes about this topic.-Adm
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A clever trick borrowed from jellyfish has earned two Americans and one Japanese scientist a share of the chemistry Nobel Prize.

Martin Chalfie, Roger Tsien and Osamu Shimomura made it possible to exploit the genetic mechanism responsible for luminosity in the marine creatures.

Today, countless scientists use this knowledge to tag biological systems.

Glowing markers will show, for example, how brain cells develop or how cancer cells spread through tissue.

But their uses really have become legion: they are now even incorporated into bacteria to act as environmental biosensors in the presence of toxic materials.

Colour palette

Jellyfish will glow under blue and ultraviolet light because of a protein in their tissues. Scientists refer to it as green fluorescent protein, or GFP.

Shimomura made the first critical step, isolating GFP from a jellyfish (Aequorea victoria) found off the west coast of North America in 1962. He made the connection also with ultraviolet light.

Meanwhile in the 1990s, Chalfie demonstrated GFP's value "as a luminous genetic tag", as the Royal Swedish Academy of Sciences described it in the Nobel citation.

GFP mosquitoes (SPL)
Scientists use GFP to study mosquitoes and malaria

Tsien's contribution was to further "our general understanding of how GFP fluoresces". In essence, he started to tune it, to broaden the palette to colours other than green. This was significant because it has allowed scientists to follow a number of different biological processes at once.

GFP has now become a standard laboratory tool. As well as assisting fundamental research in simply revealing how biological systems work, it has become invaluable in the domain of genetic engineering.

Scientists trying to modify a plant or animal will often include the gene responsible for GFP as part of the change. Fluorescence will then tell them if the modification has been taken up successfully or not, dramatically improving the efficiency of the research.

Shared glory

It is this science which has led to the stream of popular media stories down the years of "glowing" rabbits, butterflies, pigs - and all the other green-tinged animals to emerge from laboratories.

Just how far colouring techniques have come was demonstrated eloquently last year by a team led from Harvard University.

GFP mouse (SPL)
The GFP technique has provided fodder for the news media

The group used a combination of multiple fluorescent proteins to colour brain cells (neurons) in up to 90 distinct colours. They published a stunning image in the journal Nature which they called a "brainbow".

Osamu Shimomura is affiliated to the Marine Biological Laboratory, Woods Hole, US. Martin Chalfie is at Columbia University, New York; and Roger Tsien's home institution is the University of California, San Diego. They share the prize equally.

The Nobel Prizes - which also cover physics, medicine, literature, peace and economics (more properly called the Sveriges Riksbank Prize) - are valued at 10m Swedish Kronor (£800,000; $1.4m).

Laureates also receive a medal and a diploma.

Jonathan.Amos-INTERNET@bbc.co.uk

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