AI Article Synopsis

  • Macroautophagy is a cellular process that responds to nutrient stress by engulfing and degrading cytosolic components through the formation of autophagosomes, which fuse with lysosomes.
  • Numerous factors regulate this process, notably the Class III PI3K Vps34 and its recruitment to a complex involving Vps15, Beclin-1, and Atg14L, known as Vps34 Complex I.
  • NRBF2 has been identified as a crucial component of Vps34 Complex I, interacting directly with Vps15 and influencing the induction of autophagy, particularly in response to nutrient deprivation.

Article Abstract

Macroautophagy is a physiological cellular response to nutrient stress, which leads to the engulfment of cytosolic contents by a double-walled membrane structure, the phagophore. Phagophores seal to become autophagosomes, which then fuse with lysosomes to deliver their contents for degradation. Macroautophagy is regulated by numerous cellular factors, including the Class III PI3K (phosphoinositide 3-kinase) Vps34 (vacuolar protein sorting 34). The autophagic functions of Vps34 require its recruitment to a complex that includes Vps15, Beclin-1 and Atg14L (autophagy-related 14-like protein) and is known as Vps34 Complex I. We have now identified NRBF2 (nuclear receptor-binding factor 2) as a new member of Vps34 Complex I. NRBF2 binds to complexes that include Vps34, Vps15, Beclin-1 and ATG-14L, but not the Vps34 Complex II component UVRAG (UV radiation resistance-associated gene). NRBF2 directly interacts with Vps15 via the Vps15 WD40 domain as well as other regions of Vps15. The formation of GFP-LC3 (light chain 3) punctae and PE (phosphatidylethanolamine)-conjugated LC3 (LC3-II) in serum-starved cells was inhibited by NRBF2 knockdown in the absence and presence of lysosomal inhibitors, and p62 levels were increased. Thus NRBF2 plays a critical role in the induction of starvation-induced autophagy as a specific member of Vps34 Complex I.

Download full-text PDF

Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC4180102PMC
http://dx.doi.org/10.1042/BJ20140515DOI Listing

Publication Analysis

Top Keywords

vps34 complex
20
vps34
8
vps15 beclin-1
8
member vps34
8
nrbf2
6
complex
6
vps15
5
nrbf2 regulates
4
regulates macroautophagy
4
macroautophagy component
4

Similar Publications

[Advances in the study of viruses inhibiting the production of advanced autophagy or interferon through Rubicon to achieve innate immune escape].

Xi Bao Yu Fen Zi Mian Yi Xue Za Zhi

January 2025

Department of Pathogen Biology and Immunology, Kunming Medical University, Kunming 650500, China. *Corresponding authors, E-mail:

The innate immune response is the first line of defense for the host against viral infections. Targeted degradation of pathogenic microorganisms through autophagy, in conjunction with pattern recognition receptors synergistically inducing the production of interferon (IFN), constitutes an important pathway for the body to resist viral infections. Rubicon, a Run domain Beclin 1-interacting and cysteine-rich domain protein, has an inhibitory effect on autophagy and IFN production.

View Article and Find Full Text PDF

Autophagy, a recycling process in eukaryotes, contributes to tumor growth and metastasis by alleviating cellular stress and facilitating survival and chemoresistance. The development of small molecules that selectively inhibit this pathway has proven challenging and is required to determine if autophagy inhibition can be harnessed as an effective therapeutic strategy in cancer. Compound 19 was previously identified as a selective autophagy inhibitor that targets the ATG14L-Beclin1 protein-protein interaction, which regulates the formation, localization, and function of VPS34 Complex I to initiate autophagy.

View Article and Find Full Text PDF

Stress granules sequester autophagy proteins to facilitate plant recovery from heat stress.

Nat Commun

December 2024

Guangdong Provincial Key Laboratory of Biotechnology for Plant Development, School of Life Sciences, South China Normal University, Guangzhou, China.

The autophagy pathway regulates the degradation of misfolded proteins caused by heat stress (HS) in the cytoplasm, thereby maintaining cellular homeostasis. Although previous studies have established that autophagy (ATG) genes are transcriptionally upregulated in response to HS, the precise regulation of ATG proteins at the subcellular level remains poorly understood. In this study, we provide compelling evidence for the translocation of key autophagy components, including the ATG1/ATG13 kinase complex (ATG1a, ATG13a), PI3K complex (ATG6, VPS34), and ATG8-PE system (ATG5), to HS-induced stress granules (SGs) in Arabidopsis thaliana.

View Article and Find Full Text PDF

Novel exploitation of autophagy by tombusviruses.

Virology

December 2024

Department of Plant Pathology, University of Kentucky, Plant Science Building, Lexington, KY, USA.

Positive-strand (+)RNA viruses are major pathogens of humans, animals and plants. This review summarizes the complex interplay between the host autophagy pathway and Tomato bushy stunt virus (TBSV) replication. Recent discoveries with TBSV have revealed virus-driven exploitation of autophagy in multiple ways that contributes to the unique phospholipid composition of viral replication organellar (VROs) membranes.

View Article and Find Full Text PDF

LOC730101 improves ovarian cancer drug sensitivity by inhibiting autophagy-mediated DNA damage repair via BECN1.

Cell Death Dis

December 2024

The Key Laboratory of Carcinogenesis and Cancer Invasion of the Chinese Ministry of Education, Xiangya Hospital and School of Basic Medical Science, Central South University, Changsha, Hunan, China.

Drug resistance and recurrence are still the bottlenecks in the clinical treatment of ovarian cancer (OC), seriously affecting patients' prognosis. Therefore, it is an urgent challenge for OC to be overcome towards precision therapy by studying the mechanism of OC drug resistance, finding new drug resistance targets and developing new effective treatment strategies. In this study, we found that lncRNA LOC730101 played an essential role in attenuating drug resistance in OC.

View Article and Find Full Text PDF

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!