Kamryn
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kamdiehl.bsky.social
Kamryn
@kamdiehl.bsky.social
UBC Botany
Reposted by Kamryn
Recent update: An incredible video captured by Kamryn @kamdiehl.bsky.social

You will see what happens to the cell with GLOOP (gentle lysis of obstructive protoplasm) solution incubation.
April 17, 2025 at 5:04 PM
Reposted by Kamryn
Microtubule plus-end dynamics are tightly coupled to the turnover of the MOR1 polymerase https://www.biorxiv.org/content/10.1101/2024.10.30.621176v1
Microtubule plus-end dynamics are tightly coupled to the turnover of the MOR1 polymerase https://www.biorxiv.org/content/10.1101/2024.10.30.621176v1
MOR1/XMAP215/Dis1/Stu2 family proteins function as polymerases that promote microtubule assembly thr
www.biorxiv.org
November 4, 2024 at 5:31 AM
Reposted by Kamryn
(10/17) We tested that by treating CDKA;1-mVenus with Olomoucine. The CDKA;1-mVenus signal goes down with Olomoucine treatment and reverts back during the recovery. This suggests Olomoucine blocks CDKA;1 reversibly.
April 6, 2025 at 10:49 PM
Reposted by Kamryn
(9/17) Kamryn tested Olomoucine (Red) binding (yellow) with CDKA;1 (cyan). She found that Olomoucine occupies the same binding site of ATP. As ATP binds reversibly, we hypothesized Olomoucine may act reversibly too.
April 6, 2025 at 10:48 PM
Reposted by Kamryn
(8/17) Kamryn ran a molecular dynamics simulation and showed that ATP (Magenta) binds (yellow) with CDKA;1 (cyan). This known interaction confirms that we had a good AlphaFold-based 3D structure of CDKA1 and molecular dynamic simulation pipeline established.
April 6, 2025 at 10:48 PM
Reposted by Kamryn
(7/17) Among these, CDKA1 controls both G1 to S and G2 to M transitions. But, loss of function of CDKA1 causes the male gametophyte lethality. So, we used a chemical, Olomoucine, approach to block CDKA1.
April 6, 2025 at 10:47 PM
Reposted by Kamryn
(4/17) That was exciting! Olivia went ahead to test stress recovery for salt, osmotic, cold, and heat. We ended up with a massive dataset and got lost in quantification.

41,913 cells counted!!!
April 6, 2025 at 10:45 PM
Reposted by Kamryn
(1/17) We are excited to share the Ashraf and Gallagher labs collaboration on cell cycle regulation during environmental stress recovery in Arabidopsis, Brachypodium, and ryegrass.
Cell cycle follows pause and play mechanism in environment stress recovery in diverse plant species https://www.biorxiv.org/content/10.1101/2025.04.02.646900v1
April 6, 2025 at 10:43 PM
Reposted by Kamryn
Cell cycle follows pause and play mechanism in environment stress recovery in diverse plant species https://www.biorxiv.org/content/10.1101/2025.04.02.646900v1
April 6, 2025 at 8:04 PM