#macromo
Cw: vore
Purple kitsunes are yummy
@griffbeeks.bsky.social
Artist www.furaffinity.net/user/macromo...
November 24, 2024 at 3:30 PM
An international team of crystallographers determined the structure of a protein at 0.43 Ångstrom resolution, the highest ever achieved for a biological macromolecule.
X-ray crystallography achieves the highest resolution ever reached in a protein - Sinaptica
An international team of crystallographers determined the structure of a protein at 0.43 Ångstrom resolution, the highest ever achieved for a biological macromo
sinapti.ca
September 15, 2026 at 4:14 PM
These foci contain PARP14, p62 and ubiquitin. Their function - not clear yet... Nicolas Hoch and his team wrote a nice review summarising what we know to date. They also propose to name the bodies: Interferon-induced cytosolic ADPr
bodies” (ICABs).

portlandpress.com/bioscirep/ar...
Interferon-induced ADP-ribosylation: technical developments driving ICAB discovery
Cells respond to a variety of internal and external stimuli by regulating the activities of different signalling cascades and cellular processes, often via chemical modifications of biological macromo...
portlandpress.com
March 2, 2025 at 8:21 PM
Finales de mayo es sinónimo de final de curso y con esto, las despedidas 😢

🎥 ÚLTIMO CAPÍTULO de #Espaisdeciència

Cerramos esta temporada con la entrevista a Mario Culebras, profesor en el departamento de química física, e investigador en el Instituto de Ciencia de Materiales de la @uv.es.
Ciencia de materiales para un futuro más sostenible - Revista Mètode
Mario Culebras es profesor ayudante doctor en el departamento de química física, e investigador en el Instituto de Ciencia de Materiales de la Universitat de València. Forma parte del grupo de macromo...
metode.es
May 26, 2025 at 9:46 AM

Bluesky's Top 10 Trending Words (past 10min):
💨x1* - epstein 🔓
💨x1* - ukraine 🔓
💨x1* - gaza 🔓
💨x1* - democracy 🔓
💨x17 - 1﹐745
💨x10 - birthright
💨x9 - toby
💨x9 - ofsted
💨x8 - rahm
💨x8 - kitkat
*🔓 = Unlocked Emergency Words (see img)

#йобанарусня 🇺🇦

(Something not right? Reply!)
March 30, 2026 at 5:00 PM
Trumpův svět (411.–413. den): Vysvětlujeme, co lze očekávat od nového íránského... (denikn.cz)
Podľa analytikov je účasť Rusov a Bielorusov na paralympiáde pod... (dennikn.sk)
Společnosti Tomáše Čupra staví ekosystém na podporu dlouhověkosti. Klíčem je analýza dat aplikací Macromo (cc.cz)
March 9, 2026 at 1:01 PM
I have molecule envy RT @DjukeVeldhuis: Tree-like giant is largest molecule ever made http://bit.ly/eRA2Ws
Tree-like giant is largest molecule ever made
With the mass of 200 million hydrogen atoms, this macromo...
bit.ly
December 2, 2024 at 6:27 PM
(MS Reviews) Mass Spectrometry Insights Into Post‐Translational Modifications in Extracellular Vesicles: ABSTRACT

Extracellular vesicles (EVs) are membrane-enclosed structures secreted by virtually all living cells, serving as essential mediators of intercellular… #MassSpectromRev #MassSpecRSS
Mass Spectrometry Insights Into Post‐Translational Modifications in Extracellular Vesicles
ABSTRACT Extracellular vesicles (EVs) are membrane-enclosed structures secreted by virtually all living cells, serving as essential mediators of intercellular communication in both physiological and pathological processes. There is growing interest in their potential applications as biomarkers, therapeutic targets, and drug delivery systems, which entails the need for a detailed understanding of their molecular composition. The functional cargo of EVs includes all types of biological macromolecules, among which proteins are of particular importance. As the vesicular proteome becomes increasingly mapped, research attention is gradually shifting toward post-translational modifications (PTMs), which fundamentally influence protein function and play key roles in all aspects of vesicular activity, including biogenesis, cargo sorting, recognition, and uptake. In this review, we outline recent advances in the application of mass spectrometry (MS)-based analysis of PTMs in EVs. In this context, we provide an overview of the roles of various PTMs in EV biology, discuss the impact of EV isolation methods on downstream PTM analyses, and address current challenges and approaches related to MS-based investigations. We further highlight key findings concerning specific PTMs, including glycosylation, phosphorylation, acetylation, methylation, lipidation, and small ubiquitin-like modifier (SUMOylation). Finally, we discuss studies focusing on the simultaneous analysis of multiple PTMs, as well as efforts toward multiomic data integration and single-EV characterization to resolve vesicular heterogeneity, highlighting these approaches as cutting-edge directions in the field.
dlvr.it
June 28, 2026 at 11:04 AM