王廷方Ting-Fang Wang
tingfangwang.bsky.social
王廷方Ting-Fang Wang
@tingfangwang.bsky.social
Reposted by 王廷方Ting-Fang Wang
I was privileged to work closely with Meng-Chao during my early years as a junior PI at Fred Hutch. We worked on centromeric histones and chromosome dynamics. He fundamentally shaped how I think about genome organization. His mind was brilliant, his rigor uncompromising, his generosity boundless. 2/
November 17, 2025 at 11:26 PM
Reposted by 王廷方Ting-Fang Wang
Deeply saddened by the passing of my colleague, Prof. Meng-Chao Yao, a remarkable scientist and mentor. He left an indelible mark on all of us fortunate enough to know him. His legacy in molecular and ciliate biology will endure. Rest well, my friend. 1/

obituaries.seattletimes.com/obituary/men...
Meng-Chao Yao Obituary | 1949 - 2025 | Seattle Times
View Meng-Chao Yao's complete obituary, share memories, and explore 1 tribute posts from the community.
obituaries.seattletimes.com
November 17, 2025 at 11:24 PM
Reposted by 王廷方Ting-Fang Wang
"Homologous recombination counteracts mismatch repair to promote fertility and genetic diversity"
by Ting-Fang Wang (@tingfangwang.bsky.social) & Ji-Long Liao (廖吉隆)

"We postulate that counter-actions of MMR and HR contribute to the post-zygotic isolation..."

authors.elsevier.com/sd/article/S...
November 14, 2025 at 2:25 PM
Reposted by 王廷方Ting-Fang Wang
Also see two accompanying papers by the labs of Scott Keeney and Ming-Han Tong reporting similar findings, focusing on the SPO11-TOP6BL complex.
www.nature.com/articles/s41...
www.nature.com/articles/s41...

And here is a nice News&views by Mendez Diaz and Corbett.
www.nature.com/articles/d41...
Reconstitution of SPO11-dependent double-strand break formation - Nature
Reconstitution of recombinantly expressed SPO11–TOP6BL complex recapitulates its DNA cleavage function and together with structural modelling and biochemical experiments, provides insights into the re...
www.nature.com
February 19, 2025 at 4:52 PM
Reposted by 王廷方Ting-Fang Wang
Shared Alteration of Whole-Brain Connectivity and Olfactory Deficits in Multiple Autism Mouse Models https://www.biorxiv.org/content/10.1101/2025.02.02.636175v1
February 3, 2025 at 3:15 PM
pubmed.ncbi.nlm.nih.gov/39706365/

Ki-67 and CDK1 control the dynamic association of nuclear lipids with mitotic chromosomes

www.imb.sinica.edu.tw/ch/research/...

Does “Chromosome Envelope” Exist in Addition to the Cell Membrane and Nuclear Envelope?
中央研究院 分子生物研究所
中央研究院 分子生物研究所
www.imb.sinica.edu.tw
February 3, 2025 at 10:36 PM
Shared Alteration of Whole-Brain Connectivity and Olfactory Deficits in Multiple Autism Mouse Models www.biorxiv.org/content/10.1...
Shared Alteration of Whole-Brain Connectivity and Olfactory Deficits in Multiple Autism Mouse Models
Autism spectrum disorder (ASD) is a disconnection condition influenced by both heterogeneous genetic and environmental factors, yet it remains unclear whether common connectivity deficits exist. Here,...
www.biorxiv.org
February 3, 2025 at 10:34 PM