Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

Infection Dynamics of ATG8 in Leishmania: Balancing Autophagy for Therapeutics

View through CrossRef
In many regions of the world, Leishmaniasis is a cause of substantial mortality and ailment. Due to impediment in available treatment, development of novel and effective treatments is indispensable. Significance of autophagy has been accentuated in infectious disease as well as in Leishmaniasis, and it is having capability to be manifested as a therapeutic target. By evincing autophagy as a novel therapeutic regime, this study emphasized on the critical role of ATG4.1-ATG8 and ATG5-ATG12 complexes in Leishmania species. The objective here was to identify ATG8 as a potential therapeutic target in Leishmania. R71T, P56E, R18P are the significant mutations which shows detrimental effect on ATG8 while Arg276, Arg73, Cys75 of ATG4.1 and Val88, Pro89, Glu116, Asn117, and Gly120 are interacting residues of ATG8. Along with this, we also bring into spotlight an enticing role of Thiabendazole derivatives that interferes with the survival mechanisms by targeting ATG8. Further, the study claims that thiabendazole can be a potential drug candidate to target autophagy process in the infectious disease Leishmaniasis.
Title: Infection Dynamics of ATG8 in Leishmania: Balancing Autophagy for Therapeutics
Description:
In many regions of the world, Leishmaniasis is a cause of substantial mortality and ailment.
Due to impediment in available treatment, development of novel and effective treatments is indispensable.
Significance of autophagy has been accentuated in infectious disease as well as in Leishmaniasis, and it is having capability to be manifested as a therapeutic target.
By evincing autophagy as a novel therapeutic regime, this study emphasized on the critical role of ATG4.
1-ATG8 and ATG5-ATG12 complexes in Leishmania species.
The objective here was to identify ATG8 as a potential therapeutic target in Leishmania.
R71T, P56E, R18P are the significant mutations which shows detrimental effect on ATG8 while Arg276, Arg73, Cys75 of ATG4.
1 and Val88, Pro89, Glu116, Asn117, and Gly120 are interacting residues of ATG8.
Along with this, we also bring into spotlight an enticing role of Thiabendazole derivatives that interferes with the survival mechanisms by targeting ATG8.
Further, the study claims that thiabendazole can be a potential drug candidate to target autophagy process in the infectious disease Leishmaniasis.

Related Results

Genotype-Specific Activation of Autophagy during Heat Wave in Wheat
Genotype-Specific Activation of Autophagy during Heat Wave in Wheat
Recycling of unnecessary or dysfunctional cellular structures through autophagy plays a critical role in cellular homeostasis and environmental resilience. Therefore, the autophagy...
ULK1 and ULK2 modulate different aspects of skeletal muscle autophagy
ULK1 and ULK2 modulate different aspects of skeletal muscle autophagy
<p>Macroautophagy, hereafter referred to as autophagy, is a catabolic process involving the degradation of cellular proteins and structures sequestered into a vesicle known a...
Livestock infected with Leishmania spp. in southern Iran
Livestock infected with Leishmania spp. in southern Iran
Abstract Background The magnitude of the health problems caused by leishmaniasis has been a major driving factor behind the development and implemen...
Mechanisms and Pathophysiological Roles of the ATG8 Conjugation Machinery
Mechanisms and Pathophysiological Roles of the ATG8 Conjugation Machinery
Since their initial discovery around two decades ago, the yeast autophagy-related (Atg)8 protein and its mammalian homologues of the light chain 3 (LC3) and γ-aminobutyric acid rec...

Back to Top