Monday, April 11, 2016

2016 Teaching Award Recipient | Dr. Susan Forsburg

With notable pleasure the Center for Excellence in Teaching reports that at this year's Academic Honors Convocation on April 12, 2016 the Associates Award for Excellence in Teaching and the University Outstanding Teaching Assistant Awards will be presented. Please join us in congratulating these dedicated professors and teaching assistants.

Associates Award for Excellence in Teaching - citations

Susan L. Forsburg, Professor of Biological Sciences
USC Dornsife College of Letters, Arts and Sciences
C.-C. Jay Kuo, Dean's Professor of Electrical Engineering-Systems, Computer Science, and Mathematics 
USC Viterbi School of Engineering

University Outstanding Teaching Assistant Award - citations

Tushar Bharati, Economics
Jose Raul Gonzalez Alonso, Physics and Astronomy
Christopher Muniz, Creative Writing

Passing of Bob Bils, retired BISC faculty member

Dear BISC Faculty & Staff Members,

I am sad to inform you that one of our former faculty members, Prof. Robert Bils, passed away at his home on March 26 at the age of 85. Bob joined our faculty in 1962 and served 37 years before retiring in 1999. Many of us "old-timers" will remember him as a skilled electron microscopist and a very decent man. Among his many accomplishments was his pivotal role in founding of the Center for Electron Microscopy and Microanalysis. His funeral will be held tomorrow, April 12, at 11:00 am at Rose Hills Memorial Park in Whittier, with a Celebration of Life to follow at Coco's Restaurant in Montebello at 12:30 pm. Details and directions, and a brief biography of Bob, can be found at http://www.rishermortuary.com/obituaries/Robert-Bils/#!/Obituary.

Sincerely,

Albert Herrera

USC Stem Cells Distinguished Speaker Series | "Growth-associated skeletal stem cells"

CB Colloquium | “Genomics makes it easier to understand the complexity of Mendelian disorders”

Xiaowu Gai
Keck School of Medicine of USC
Director of Bioinformatics
Center for Personalized Medicine
Children's Hospital Los Angeles

Thursday, April 14, 2016
2:00 pm
RRI 101
Host:  Jasmine Zhou


MB Seminar Series | "Understanding the biology of dormant disseminated cancer cells: a path to manage late cancer relapse.”

Julio Aguirre-Ghiso
Division of Hematology and Oncology, Department of Medicine, Department of Otolaryngology, Department of Oncological Sciences, Tisch Cancer Institute, Black Family Stem Cell Institute, Ichan School of Medicine at Mount Sinai

Abstract: Clinical evidence suggests that improved outcomes within the first 5 years are due to advances in early detection, surgery and anti-proliferative therapies. This success has led to patients living longer. Nevertheless, they still die from late cancer recurrence. While a number of mechanisms may contribute, growing evidence suggests that late relapse may be due to the ability of disseminated cancer cells (DCCs) to survive in a quiescent or dormant state and evade therapies. DCCs are thought to originate from invasive primary lesions, but it is now recognized that early-evolved lesions can also generate DCCs. The mechanisms that produce early-disseminated cancer cells (eDCC) during early stages of breast cancer evolution are poorly understood. Here we show that HER2+ cancer cells in mammary intraepithelial neoplasias (MIN), are highly efficient in systemically disseminating from primary sites. These eDCCs were HER2+/P-ATF2lo/E-cadherinlo, and were found also in human DCIS samples. Further, eDCC precursors in MIN lesions underwent a Wnt-dependent EMT that was reversed by HER2 or Wnt signaling blockade. Intra-vital imaging of transgenic HER2-CFP MIN lesions revealed that eDCC precursors invade the local stroma, intravasate and circulate to target organs. This process was aided by macrophages in similar way as they regulate mammary branching morphogenesis. We found that macrophages are localized inside the epithelium of pre-malignant lesions but localize in the stroma of healthy tissue. Macrophage recruitment depends on upregulation of CCL2 in HER2+ mammary epithelial cells via activation of NFkB. Importantly, samples from patients with DCIS frequently contained intra-epithelial macrophages, correlating with E-Cadherin downregulation. Macrophage invasion into ducts disrupted the myoepithelium and further supported the oncogene-driven EMT-like response in luminal cells and their spread. Surprisingly, although the vast majority of eDCCs are non-proliferative, they can still initiate metastasis. However, depletion of macrophages from pre-malignant HER2+ lesions drastically reduces early dissemination and late metastasis. We reveal that during a stage when HER2 still does not fuel proliferation, it aberrantly activates a side-branching morphogenetic program that through macrophage recruitment and an EMT-like response causes early dissemination. That eDCCs carry latent metastatic initiating capacity cancer changes our understanding of metastasis onset and how it might be targeted effectively. For example, if immune therapies depend on a high mutational load, eDCCs may evade immune detection.

Friday, April 15, 2016
12:00 PM
RRI 101
Host: Peter Kuhn

NGP Distinguished Speaker Series | Amita Sehgal

Monday, April 11, 2016
4:00 PM to 5:00 PM
University Park Campus
Hedco Neurosciences Building (HNB)

Amita Sehgal is a molecular biologist and chronobiologist in the Department of Neuroscience at the Perelman School of Medicine at the University of Pennsylvania. Sehgal has been involved in the discovery of Drosophila TIM and many other important components of the Drosophila clock mechanism. Sehgal has contributed greatly to the development of Drosophila as a model for the study of sleep. Her research continues to be focused on understanding the genetic basis of sleep and also how circadian systems relate to other aspects of physiology.

Amita Sehgal's major goal is to understand the molecular and cellular networks that drive behavior, in particular rhythmic behaviors such as sleep. Her studies are done largely with the fruit fly, Drosophila melanogaster, and are directed towards elucidating the mechanisms that confer a circadian (~24-hour) periodicity on much of behavior and physiology as well as understanding how and why the need to sleep is generated.

IEB Grad Student Andrea Currylow in Madagascar

Join Holohil's John Edwards as he travels to southern Madagascar to assist USC biologist Andrea Currylow with her PhD research on Radiated and Spider Tortoises!