how bacteria build homes inside healthy cells
Last Updated : GMT 05:17:37
Emiratesvoice, emirates voice
Emiratesvoice, emirates voice
Last Updated : GMT 05:17:37
Emiratesvoice, emirates voice

How bacteria build homes inside healthy cells

Emiratesvoice, emirates voice

Emiratesvoice, emirates voice How bacteria build homes inside healthy cells

Tehran - Fna

Bacteria are able to build camouflaged homes for themselves inside healthy cells - and cause disease - by manipulating a natural cellular process. Purdue University biologists led a team that revealed how a pair of proteins from the bacteria Legionella pneumophila, which causes Legionnaires disease, alters a host protein in order to divert raw materials within the cell for use in building and disguising a large structure that houses the bacteria as it replicates. Zhao-Qing Luo, the associate professor of biological sciences who headed the study, said the modification of the host protein creates a dam, blocking proteins that would be used as bricks in cellular construction from reaching their destination. The protein \"bricks\" are then diverted and incorporated into a bacterial structure called a vacuole that houses bacteria as it replicates within the cell. Because the vacuole contains materials natural to the cell, it goes unrecognized as a foreign structure. \"The bacterial proteins use the cellular membrane proteins to build their house, which is sort of like a balloon,\" Luo said. \"It needs to stretch and grow bigger as more bacterial replication occurs. The membrane material helps the vacuole be more rubbery and stretchy, and it also camouflages the structure. The bacteria is stealing material from the cell to build their own house and then disguising it so it blends in with the neighborhood.\" The method by which the bacteria achieve this theft is what was most surprising to Luo. The bacterial proteins, named AnkX and Lem3, modify the host protein through a biochemical process called phosphorylcholination that is used by healthy cells to regulate immune response. Phosphorylcholination is known to happen in many organisms and involves adding a small chemical group, called the phosphorylcholine moiety, to a target molecule, he said. The team discovered that AnkX adds the phosphorylcholine moiety to a host protein involved in moving proteins from the cell\'s endoplasmic reticulum to their cellular destinations. The modification effectively shuts down this process and creates a dam that blocks the proteins from reaching their destination. The bacterial protein Lem3 is positioned outside the vacuole and reverses the modification of the host protein to ensure that the protein \"bricks\" are free to be used in creation of the bacterial structure. This study was the first to identify proteins that directly add and remove the phosphorylcholine moiety, Luo said. \"We were surprised to find that the bacterial proteins use the phosphorylcholination process and to discover that this process is reversible,\" he said. \"This is evidence of a new way signals are relayed within cells, and we are eager to investigate it.\" The team also found that the phosphorylcholination reaction is carried out at a specific site on the protein called the Fic domain. Previous studies had shown this site induced a different reaction called AMPylation. It is rare for a domain to catalyze more than one reaction, and it was thought this site\'s only responsibility was to transfer the chemical group necessary for AMPylation, Luo said. \"Revealing that this domain has dual roles is very important to identify or screen for compounds to inhibit its activity and fight disease,\" he said. \"This domain has a much broader involvement in biochemical reactions than we thought and may be a promising target for effective treatments.\" During infection bacteria deliver hundreds of proteins into healthy cells that alter cellular processes to turn the hostile environment into one hospitable to bacterial replication, but the specific roles of only about 20 proteins are known, Luo said. \"In order to pinpoint proteins that would be good targets for new antibiotics, we need to determine their roles and importance to the success of infection,\" he said. \"We need to understand at the biochemical level exactly what these proteins do and how they take over natural cellular processes. Then we can work on finding ways to block these activities, stop the infection and save lives.\" A paper detailing their National Institutes of Health-funded work is published in the current issue of the Proceedings of National Academy of Sciences. In addition to Luo, Purdue graduate student Yunhao Tan and Randy Ronald of Indiana University co-authored the paper. Luo next plans to use the bacterial proteins as a tool to learn more about the complex cellular processes controlled by phosphorylcholination and to determine the biochemical processes role in cell signaling.  

Name *

E-mail *

Comment Title*

Comment *

: Characters Left

Mandatory *

Terms of use

Publishing Terms: Not to offend the author, or to persons or sanctities or attacking religions or divine self. And stay away from sectarian and racial incitement and insults.

I agree with the Terms of Use

Security Code*

how bacteria build homes inside healthy cells how bacteria build homes inside healthy cells

 



Name *

E-mail *

Comment Title*

Comment *

: Characters Left

Mandatory *

Terms of use

Publishing Terms: Not to offend the author, or to persons or sanctities or attacking religions or divine self. And stay away from sectarian and racial incitement and insults.

I agree with the Terms of Use

Security Code*

how bacteria build homes inside healthy cells how bacteria build homes inside healthy cells

 



GMT 10:18 2016 Wednesday ,23 March

cartoon seven

GMT 10:18 2016 Wednesday ,23 March

cartoon eight

GMT 10:31 2014 Tuesday ,23 December

Mirages of failure: Lebanon cannot wait

GMT 12:38 2017 Friday ,04 August

Rabat midfielder pleasure for winning

GMT 07:04 2017 Monday ,09 January

Reasons Why You Should Choose Neutral

GMT 09:03 2017 Tuesday ,03 October

UAE Gets First Mobile Wallet

GMT 16:17 2018 Thursday ,30 August

Five Saudi women pilots granted GACA licences

GMT 09:53 2017 Sunday ,26 February

Tips for heart failure management in women

GMT 18:01 2017 Thursday ,02 November

beIN graft claims test limit of Qatar's soft power

GMT 19:24 2017 Tuesday ,29 August

Giving lies at the heart of UAE developmental drive

GMT 19:06 2015 Tuesday ,23 June

Belgian court suspends UEFA FFP measure

GMT 21:12 2017 Saturday ,20 May

2,066 trade violations detected in RAK

GMT 14:34 2015 Monday ,27 April

Fashion brand Anya Marokko launches

GMT 15:17 2017 Saturday ,23 September

Mortada praises cooperation between staff

GMT 13:53 2017 Thursday ,02 November

Bank of England hikes rates for first time in a decade

GMT 10:23 2017 Saturday ,28 October

Deputy premier opens BIPEX 2017
 
 Emirates Voice Facebook,emirates voice facebook  Emirates Voice Twitter,emirates voice twitter Emirates Voice Rss,emirates voice rss  Emirates Voice Youtube,emirates voice youtube  Emirates Voice Youtube,emirates voice youtube

Maintained and developed by Arabs Today Group SAL.
All rights reserved to Arab Today Media Group 2025 ©

Maintained and developed by Arabs Today Group SAL.
All rights reserved to Arab Today Media Group 2025 ©

emiratesvoieen emiratesvoiceen emiratesvoiceen emiratesvoiceen
emiratesvoice emiratesvoice emiratesvoice
emiratesvoice
بناية النخيل - رأس النبع _ خلف السفارة الفرنسية _بيروت - لبنان
emiratesvoice, Emiratesvoice, Emiratesvoice