Ryuji Yanase

@ryanase.bsky.social

Senior Research Scientist at the National Institute of Infectious Diseases (NIID), Japan Institute for Health Security (JIHS) studying the cell & molecular biology of parasitic Excavata & amoebae

@zjmaggiexu.bsky.social's story on suctorian trap structure adaptation is now online in @currentbiology.bsky.social , with new evolutionary analyses and modeling! This fall, Maggie will keep exploring predatory protists as a PD in @nbellono.bsky.social group; keep an eye out for her she's amazing!

sciencedirect.com

Scott Coyle@cellraiser.bsky.social · 9mo ago

How do cells adapt morphology to function? In a 🔥 preprint by @zjmaggiexu.bsky.social , with @dudinlab.bsky.social and @amyweeks.bsky.social , we identify a self-organizing single-cell morphology circuit that optimizes the feeding trap structure of the suctorian P. collini. 🧵 tinyurl.com/4k8nv926

I have officially started my new position as a Senior Research Scientist at the National Institute of Infectious Diseases (NIID) 🇯🇵. My new research group will focus on the cell/molecular biology of parasitic Excavata & amoebae (incl. Trypanosoma, Naegleria, Acanthamoeba, & more) (1/3)

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Now in Nature Comms w/ @ritatewari.bsky.social, Pushkar Sharma & @ryanase.bsky.social (thanks!). Aurora kinases fascinate me: single ancestor - parallel duplications in eukaryotes - paralogs with distinct functions. ARK1 is the CPC Aurora in the malaria parasite. rdcu.be/e5NRT #plasmodium #mitosis

Plasmodium ARK1 regulates spindle formation during atypical mitosis and forms a divergent chromosomal passenger complex

Nature Communications - This study reveals that the malaria parasite Plasmodium uses a unique Aurora kinase complex to control cell division. This divergent machinery regulates spindle formation...

rdcu.be

Eelco Tromer@eelcotromer.bsky.social · 11mo ago

New work on ARK1 (AURKB?) in Plasmodium (malaria parasite) with @ritatewari.bsky.social and Pushkar Sharma. CPC in Plasmodium is (ofcourse..) different compared to conventional models: two INCENPs, no borealin/survivin - mainly at spindle microtubules/MTOCs. Special thanks to @ryanase.bsky.social!

I appreciate the comments by Max Raas, Eelco Tromer and others on my paper published last year "Hypothesis that ancestral eukaryotes sexually proliferated without kinetochores or mitosis". However, I do not think their critiques can reject my hypothesis. For details, please read the paper. 1/n

Max Raas@maxraas.bsky.social · 6mo ago

Recently, a Hypothesis was posed in @jcellsci.bsky.social in which the root of eukaryotes was placed between kinetoplastids and all other eukaryotes. From this, it was implied that LECA did not have a kinetochore. We argue this is highly unlikely. A 🧵(1/12) Read our reply here: tinyurl.com/n87myhpr

The discovery of the first kinetochore proteins (CENP-A, CENP-B, CENP-C) was reported by Bill Earnshaw and Naomi Rothfield in 1985 in Chromosoma. Forty years later, Chromosoma/Chromosome Research has published a special issue (most articles are open access) link.springer.com/collections/...

40 years of CENP-A

In 1985, Earnshaw and Rothfield published in Chromosoma a landmark discovery of the centromere-specific protein CENP-A. Subsequent research has shown that ...

link.springer.com