Mukherjee Lab

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Mukherjee Lab

Mukherjee Lab

@Mukherjee_Lab

Our lab is using Legionella pneumophila as a tool to gain insights into basic mammalian cell-biological processes. @UCSF

San Francisco, CA 가입일 Mart 2019
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Dr. Seema Mattoo
Dr. Seema Mattoo@MattooLab·
Purdue’s coverage by writer @alisha_referda on our development of the first inhibitor targeting #AMPylation, published in @StressCell journal. @PurdueScience @PurdueLifeSci
Purdue Biological Sciences@PurdueBiolSci

. @PurdueScience professor Seema Mattoo and her team have found a small molecule inhibitor that could help treat neurodegenerative diseases and diabetes by targeting the protein HYPE. @MattooLab purduesci.com/3MGpAIa #PurdueScience #Science #PurdueBiology #Biology #Research

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Joe Bondy-Denomy
Joe Bondy-Denomy@joeBondyDenomy·
The link for the faculty position is now posted! Deadline is October 15th. Please share widely with talented scientists in your network. Come join us at UCSF! aprecruit.ucsf.edu/JPF05243
Joe Bondy-Denomy@joeBondyDenomy

Search: Tenure track Faculty Position @UCSF in the Dept. of Micro and Immuno, with lab space at the Mission Bay campus! We seek a creative investigator with a strong independent research plan who will be a great mentor, colleague, and peer. Job ad soon. Assistant Prof level.

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Felix Horns
Felix Horns@FelixHorns·
Thrilled to be aboard!
Arc Institute@arcinstitute

🎉 Today, Arc welcomes our newest Core Investigator, Dr. @FelixHorns! Dr. Horns joins the Arc community as a Core Investigator and @Stanford as Assistant Professor of Genetics. The Horns lab works at the interface of synthetic biology and genomics to discover the fundamental principles governing how cells and tissues operate, particularly within the immune system and the brain. At Arc, the Horns lab will create and apply new technologies for monitoring and manipulating living cells, shedding light into how cells change over time and how therapeutics could be delivered directly to cells within the body. Welcome to Arc, Dr. Horns! 🥼

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PrakashLab
PrakashLab@PrakashLab·
A surprise gift of « new curve crease origami » we call Lacrygami brought to us by a single cell (this is the first example of origami in a single cell)!! Will write a longer thread shortly describing our journey to discovery - in mean time, enjoy this beautiful cell.
Science Magazine@ScienceMagazine

The tiny predator Lacrymaria olor owes its shape-shifting ability to an “origami-like” cellular architecture, a new Science study finds. The results offer a glimpse into geometrical control of behavior in single cells. Learn more in this week's issue: scim.ag/7eu

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Ankita Ghoshal
Ankita Ghoshal@ankitaghoshal9·
@Mukherjee_Lab Congratulations!! Your lab profile and the work you do is very interesting. All the best for your future projects ma'am!
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Dr. Seema Mattoo
Dr. Seema Mattoo@MattooLab·
@Mukherjee_Lab Congratulations! This looks very interesting, and something I definitely want to add to my Legionella lecture! Eager to read more about the novel effector too.
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Eric Betzig
Eric Betzig@Eric_Betzig·
#FluorescenceFriday #cellbiology #bioart The interior of the cell is a busy place, as seen by grazing incidence structured illumination microscopy at 30 frames per minute: Lysosomes (green) can become corralled by the endoplasmic reticulum (ER, magenta), but can also remodel the ER when they are actively transported at high speed along microtubules (MTs, yellow). ER tubules are also remodeled directly when they associate with the growing or shrinking ends of MTs. doi.org/10.1016/j.cell…
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American Society for Cell Biology
Exciting update! Starting December 2, 2023, all ASCB member submissions to MBoC are ensured a thorough peer review. Simply ensure the corresponding author is an ASCB member to qualify.
American Society for Cell Biology tweet media
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Mukherjee Lab
Mukherjee Lab@Mukherjee_Lab·
@Nick_E_Scott @NatureCellBio Thank you, Nichollas. We couldnt detect mannosylation in any of the Ser/Thr residues. You may be exactly right, and it could be an unusual amino acid that is gettting modified. We are on it! :)
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Nichollas Scott
Nichollas Scott@Nick_E_Scott·
@Mukherjee_Lab @NatureCellBio Super cool paper but one thing I can't seem to find in the paper is what amino acid residue does sidI glycosylate? Is it a targeting s/t or is it something more funky?
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