Uploaded May 2024 | Updated September 2026, 3 weeks ago
patreon.com/statedclearly
See the full video: youtu.be/K1xnYFCZ9Yg?si=x4wdMR7taNrIiTQy
The paper: Isolation of Fast Purine Nucleotide Synthase Ribozymes
sfu.ca/~punrau/pdfs/Lau_JACS_2004.pdf
Abstract: Here we report the in vitro selection of fast ribozymes capable of promoting the synthesis of a purine nucleotide (6-thioguanosine monophosphate) from tethered 5-phosphoribosyl 1-pyrophosphate
(PRPP) and 6-thioguanine (6SGua). The two most proficient purine synthases have apparent efficiencies of 284 and 230 M-1 min-1 and are both significantly more efficient than pyrimidine nucleotide synthase ribozymes selected previously by a similar approach. Interestingly, while both ribozymes showed good substrate discrimination, one ribozyme had no detectable affinity for 6-thioguanine while the second had a Km of ∼80 µM, indicating that these ribozymes use considerably different modes of substrate recognition. The purine synthases were isolated after 10 rounds of selection from two high-diversity RNA pools. The first pool contained a long random sequence region. The second pool contained random sequence elements interspersed with the mutagenized helical elements of a previously characterized 4-thiouridine synthase ribozyme. While nearly all of the ribozymes isolated from this biased pool population appeared to have
benefited from utilizing one of the progenitor’s helical elements, little evidence for more complicated secondary structure preservation was evident. The discovery of purine synthases, in addition to pyrimidine
synthases, demonstrates the potential for nucleotide synthesis in an ‘RNA World’ and provides a context from which to study small molecule RNA catalysis.
patreon.com/statedclearly
See the full video: youtu.be/K1xnYFCZ9Yg?si=x4wdMR7taNrIiTQy
The paper: Isolation of Fast Purine Nucleotide Synthase Ribozymes
sfu.ca/~punrau/pdfs/Lau_JACS_2004.pdf
Abstract: Here we report the in vitro selection of fast ribozymes capable of promoting the synthesis of a purine nucleotide (6-thioguanosine monophosphate) from tethered 5-phosphoribosyl 1-pyrophosphate
(PRPP) and 6-thioguanine (6SGua). The two most proficient purine synthases have apparent efficiencies of 284 and 230 M-1 min-1 and are both significantly more efficient than pyrimidine nucleotide synthase ribozymes selected previously by a similar approach. Interestingly, while both ribozymes showed good substrate discrimination, one ribozyme had no detectable affinity for 6-thioguanine while the second had a Km of ∼80 µM, indicating that these ribozymes use considerably different modes of substrate recognition. The purine synthases were isolated after 10 rounds of selection from two high-diversity RNA pools. The first pool contained a long random sequence region. The second pool contained random sequence elements interspersed with the mutagenized helical elements of a previously characterized 4-thiouridine synthase ribozyme. While nearly all of the ribozymes isolated from this biased pool population appeared to have
benefited from utilizing one of the progenitor’s helical elements, little evidence for more complicated secondary structure preservation was evident. The discovery of purine synthases, in addition to pyrimidine
synthases, demonstrates the potential for nucleotide synthesis in an ‘RNA World’ and provides a context from which to study small molecule RNA catalysis.





![What Caused Lifes Major Evolutionary Transitions?
Join us as we explore the fascinating transition from early cells to multi-celled animals. This transition, as well as several other major evolutionary transitions, dramatically increased the complexity of lifeforms on our planet.
If you enjoyed the show, please consider supporting us at patreon.com/statedclearly
to see the animation on bees, go here: https://www.youtube.com/watch?v=J83qyLXAsN4
SOURCES
OVERVIEW OF MAJOR TRANSITIONS
This animation was based on a paper by Stuart West et al called Major Evolutionary Transitions in Individuality which can be accessed free here: http://www.pnas.org/content/112/33/10112.full.pdf
Dr Wests paper defines major transitions in a slightly narrower way than earlier workers on the subject. For a broader definition see the book by John Maynard Smith and Eörs Szathmáry on the topic: https://en.wikipedia.org/wiki/The_Major_Transitions_in_Evolution
MITOCHONDRIA
The paper by Dr Margulis (Sagan) on the origin of mitochondria. Note that in it she presents several ideas cautiously as hypothesis. While some aspects of the paper are now known to be incorrect, she was spot on about the origin of mitochondria: http://web.gps.caltech.edu/classes/ge246/endosymbiotictheory_marguli.pdf
VIROIDS
The free living genes discovered by Dr Diener were made of RNA. Here is a paper on them: http://www.sciencedirect.com/science/article/pii/0042682271903424
Here is an excellent Wikipedia article on them I suggest looking over first. It includes a schematic of the species Diener found: https://en.wikipedia.org/wiki/Viroid
EXPERIMENTS SHOWN IN THIS ANIMATION
Phagotrophy by a flagellate selects for colonial prey: A possible origin of multicellularity: http://link.springer.com/article/10.1023/A:1006527528063
Experimental evolution of multicellularity:
http://www.pnas.org/content/109/5/1595
Auto-/heterotrophic endosymbiosis evolves in a mature stage of ecosystem development in a microcosm composed of an alga, a bacterium and a ciliate [what a catchy title!]: https://www.ncbi.nlm.nih.gov/pubmed/19162125
Arabic Subtitles by Mohammed Baset What Caused Lifes Major Evolutionary Transitions?](https://i.ytimg.com/vi/VUfNEHl44hc/mqdefault.jpg)




