Literature DB >> 16805704

Experimentally tracing the key steps in the origin of life: The aromatic world.

Pascale Ehrenfreund1, Steen Rasmussen, James Cleaves, Liaohai Chen.   

Abstract

Life is generally believed to emerge on Earth, to be at least functionally similar to life as we know it today, and to be much simpler than modern life. Although minimal life is notoriously difficult to define, a molecular system can be considered alive if it turns resources into building blocks, replicates, and evolves. Primitive life may have consisted of a compartmentalized genetic system coupled with an energy-harvesting mechanism. How prebiotic building blocks self-assemble and transform themselves into a minimal living system can be broken into two questions: (1) How can prebiotic building blocks form containers, metabolic networks, and informational polymers? (2) How can these three components cooperatively organize to form a protocell that satisfies the minimal requirements for a living system? The functional integration of these components is a difficult puzzle that requires cooperation among all the aspects of protocell assembly: starting material, reaction mechanisms, thermodynamics, and the integration of the inheritance, metabolism, and container functionalities. Protocells may have been self-assembled from components different from those used in modern biochemistry. We propose that assemblies based on aromatic hydrocarbons may have been the most abundant flexible and stable organic materials on the primitive Earth and discuss their possible integration into a minimal life form. In this paper we attempt to combine current knowledge of the composition of prebiotic organic material of extraterrestrial and terrestrial origin, and put these in the context of possible prebiotic scenarios. We also describe laboratory experiments that might help clarify the transition from nonliving to living matter using aromatic material. This paper presents an interdisciplinary approach to interface state of the art knowledge in astrochemistry, prebiotic chemistry, and artificial life research.

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Year:  2006        PMID: 16805704     DOI: 10.1089/ast.2006.6.490

Source DB:  PubMed          Journal:  Astrobiology        ISSN: 1557-8070            Impact factor:   4.335


  25 in total

1.  Photochemically driven redox chemistry induces protocell membrane pearling and division.

Authors:  Ting F Zhu; Katarzyna Adamala; Na Zhang; Jack W Szostak
Journal:  Proc Natl Acad Sci U S A       Date:  2012-06-04       Impact factor: 11.205

Review 2.  Radiolytic studies of naphthalene in the presence of water.

Authors:  Y Keheyan; I L ten Kate
Journal:  Orig Life Evol Biosph       Date:  2012-06-02       Impact factor: 1.950

3.  Inversion concept of the origin of life.

Authors:  V N Kompanichenko
Journal:  Orig Life Evol Biosph       Date:  2012-05-29       Impact factor: 1.950

Review 4.  Cosmic carbon chemistry: from the interstellar medium to the early Earth.

Authors:  Pascale Ehrenfreund; Jan Cami
Journal:  Cold Spring Harb Perspect Biol       Date:  2010-06-16       Impact factor: 10.005

Review 5.  The role of biomacromolecular crowding, ionic strength, and physicochemical gradients in the complexities of life's emergence.

Authors:  Jan Spitzer; Bert Poolman
Journal:  Microbiol Mol Biol Rev       Date:  2009-06       Impact factor: 11.056

6.  The Significance of Microbe-Mineral-Biomarker Interactions in the Detection of Life on Mars and Beyond.

Authors:  Wilfred F M Röling; Joost W Aerts; C H Lucas Patty; Inge Loes ten Kate; Pascale Ehrenfreund; Susana O L Direito
Journal:  Astrobiology       Date:  2015-06       Impact factor: 4.335

7.  Primordial oil slick and the formation of hydrophobic tetrapyrrole macrocycles.

Authors:  Ana R M Soares; Masahiko Taniguchi; Vanampally Chandrashaker; Jonathan S Lindsey
Journal:  Astrobiology       Date:  2012-10-24       Impact factor: 4.335

8.  In the Beginning was a Mutualism - On the Origin of Translation.

Authors:  Marko Vitas; Andrej Dobovišek
Journal:  Orig Life Evol Biosph       Date:  2018-04-30       Impact factor: 1.950

9.  A central theory of biology.

Authors:  John S Torday
Journal:  Med Hypotheses       Date:  2015-04-04       Impact factor: 1.538

10.  Chirality emergence in thin solid films of amino acids by polarized light from synchrotron radiation and free electron laser.

Authors:  Jun-Ichi Takahashi; Hiroyuki Shinojima; Michiko Seyama; Yuko Ueno; Takeo Kaneko; Kensei Kobayashi; Hajime Mita; Mashahiro Adachi; Masahito Hosaka; Masahiro Katoh
Journal:  Int J Mol Sci       Date:  2009-07-07       Impact factor: 6.208

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