• 제목/요약/키워드: protein binding capacity

검색결과 199건 처리시간 0.026초

Effects of Protein Functionality on Myofibril Protein-Saccharide Graft Reaction

  • Kim, Tae-Kyung;Yong, Hae In;Cha, Ji Yoon;Kim, Yun Jeong;Jung, Samooel;Choi, Yun-Sang
    • 한국축산식품학회지
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    • 제42권5호
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    • pp.849-860
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    • 2022
  • The myofibril protein (MP) isolate-saccharide graft reactions was prepared using the Maillard reaction with saccharides. The effects of various saccharides on protein functionality and quality of the Maillard reaction were investigated and compared with those of MP. The grafting degree of the MP isolate-saccharide graft reaction was significantly higher in the reducing sugar-treated groups (lactose, glucose, fructose, and palatinose). The browning intensity of the MP isolate-saccharide graft reaction with fructose, sucrose, and erythitol was higher than that observed in the control reaction (p<0.05). MP that reacted with reducing sugars (glucose, fructose, palatinose, and lactose) had fainter bands than MP that reacted with non-reducing sugars (sucrose, erythitol, trehalose, sorbitol, and xylitol). MPs conjugated with glucose exhibited higher protein solubility. The palatinose and lactose treatments were maximum in water binding capacity, though no significant difference in oil binding capacity among the saccharide treatments was observed. The emulsion stability of the MP isolate-saccharide graft reaction with palatinose and erythitol was higher than that of the control reaction. Therefore, reducing sugars have good protein functionality in the MP isolate-saccharides graft reaction.

단백질 흡착성을 갖는 막 크로마토그래피용 재생 셀룰로오스 기반 음이온 교환 다공성 분리막의 제조 (Preparation of Protein Adsorptive Anion Exchange Membrane Based on Porous Regenerated Cellulose Support for Membrane Chromatography Application)

  • 서정현;이홍태;김태경;조영훈;오택근;박호식
    • 멤브레인
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    • 제32권5호
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    • pp.348-356
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    • 2022
  • 바이오산업의 발전으로 의약품, 식품 등의 생산 과정의 분리/정제 공정에 사용되어 왔던 기존의 컬럼 크로마토그래피를 대체하여 더 높은 처리효율을 갖는 막 크로마토그래피가 부상하고 있다. 본 연구에서는 서로 다른 기공 크기의 두 가지 상용 셀룰로오스 아세테이트(Cellulose acetate, CA) 분리막을 탈아세틸화 과정을 통해, 리간드의 개질이 용이한 다공성 재생 셀룰로오스 지지체를(Regenerated cellulose, RC) 제조하였다. 음이온 교환능을 부여하고자 grafting을 수행하였으며, 구체적으로는 UV 중합법을 통해 4차 암모늄을 포함하는 음이온 교환 리간드(MAPTAC)를 부착하여 음이온 교환용 흡착막을 제조하였다. 단백질 흡착 용량은 정적 흡착 용량(Static binding capacity, SBC)시험을 통해 총 단백질 흡착 용량을 측정했고, 동적 흡착 용량(Dynamic binding capacity, DBC)을 측정하여 상용막과 비교 평가하였다. 성능 평가 결과 단백질 흡착량은 넓은 표면적에 의해 리간드 밀도가 높은, 기공 크기가 작은 순서로 높게 측정되었고, 상용 CA분리막을 탈아세틸화하고 리간드를 부착시킨 분리막(RC 0.8 + MAPTAC 43.69 mg/ml, RC 3.0 + MAPTAC 36.33 mg/ml)이 상용 막 크로마토그래피 제품(28.38 mg/ml) 대비 높은 흡착 용량을 보였다.

Nalidixic Acid와 혈장단백(血漿蛋白)과 결합(結合)에 관(關)한 연구(硏究) -동물(動物)의 종속차(種屬差)에 대(對)하여- (Binding of Nalidixic Acid with Plasma Protein -On the Species Difference in Binding-)

  • 김신근
    • Journal of Pharmaceutical Investigation
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    • 제6권1호
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    • pp.14-17
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    • 1976
  • Binding of nalidixic acid with plasma of male and female rats, dogs, and rabbits was studied in vitro using the method of equilibrium dialysis in 1/15 mole phosphate buffer (pH 7.4). Rat plasma had the most extensive binding capacity followed by dog and rabbit plasma, and the plasma of female had more extensive capability than male in rat and rabbit but it was reversed in dog.

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The Influence of Bakers' Yeast Cells on Protein Adsorption Performance in Dye-Ligand Expanded Bed Chromatography

  • Chow, Yen Mei;Tey, Beng Ti;Ibrahim, Mohd Nordin;Ariff, Arbakariya;Ling, Tau Chuan
    • Biotechnology and Bioprocess Engineering:BBE
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    • 제10권6호
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    • pp.552-555
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    • 2005
  • The influence of whole yeast cells $(0{\sim}15%\;w/v)$ on the protein adsorption performance in dye-ligand chromatography was explored. The adsorption of a model protein, bovine serum albumin (BSA), was selected to demonstrate this approach. The UpFront adsorbent $(p=1.5\;g/cm^3)$ derivatised with Cibacron Blue 3GA and a commercially available expanded bed column (20 mm i.d.) from UpFront Chromatography, Denmark, were employed in the batch binding and expanded bed operation. The BSA binding capacity was demonstrated to not be adversely affected by the presence of yeast cells. The dynamic binding capacity of BSA at a $C/C_0=0.1$ biomass concentration of 5, 10, 15% w/v were 9, 8, and 7.5mg/mL of settled adsorbent, respectively.

평판막 및 실관막 모듈에 의한 단백질의 친화성 크로마토그래피에 관한 연구 (A Study on Affinity Chromatography of Protein by Flat and Hollow-Fiber Membrane Module)

  • 이광진;염경호
    • 멤브레인
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    • 제8권1호
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    • pp.50-58
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    • 1998
  • Polysulfone 재질의 다공성 평판막 및 실관막에 키토산 피막층을 형성시킨 후 반응성 염료인 Cibacron Blue 3GA를 고정화시켜 human serum albumin(HSA)의 결합용량이 최대 70 $\mu{g/cm}^2$인 단백질 친화성 막을 제조하였다. 친화성 평판막 모듈을 대상으로 HSA에 대한 용출 크로마토그래피 실험을 수행하여 eluent 용액의 최적 환경조건을 결정하였는바, 1M KCl이 첨가된 농도 0.06 M, pH 10의 universal buffer를 eluent로 사용했을 때 리간드와 결합된 단백질의 용출이 가장 우수하였다. 친화성 평판막 및 실관막 모듈을 대상으로 HSA의 전열 크로마토그래피 실험을 수행하여 단백질에 대한 동적 결합용량을 측정하였다. 이 결과 동적 결합용량은 평판막 모듈의 경우에는 loading 용액의 유량과 HSA의 농도가 증가함에 따라 평형 결합용량 값으로부터 크게 감소하였으나, 실관막 모듈의 경우에는 loading 용액의 유량과 HSA의 농도에 관계없이 항상 평형 결합용량 수준을 유지하였는바, 따라서 실관막 모듈이 평판막 모듈보다 단백질 친화성 크로마토그래피 분리관으로서 더 효과적이었다.

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Thermodynamic Elucidation of Binding Isotherms for Hemoglobin & Globin of Human and Bovine upon Interaction with Dodecyl Trimethyl Ammonium Bromide

  • Bordbar, A.K.;Nasehzadeh, A.;Ajloo, D.;Omidiyan, K.;Naghibi, H.;Mehrabi, M.;Khajehpour, H.;Rezaei-Tavirani, M.;Moosavi-Movahedi, A.A.
    • Bulletin of the Korean Chemical Society
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    • 제23권8호
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    • pp.1073-1077
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    • 2002
  • Binding of dodecyl trimethylammonium bromide (DTAB) to human and bovine hemoglobin and globin samples has been investigated in 50 mM glycine buffer pH = 10, I = 0.0318 and 300 K by equilibrium dialysis and temperature scanning spectrophotometry techniques and method for calculation of average hydrophobicity. The binding data has been analyzed, in terms of binding capacity concept $({\theta})$, Hill coefficient (nH) and intrinsic Gibbs free energy of binding $({\Delta}Gbv).$ The results of binding data, melting point (Tm) and average hydrophobicity show that human hemoglobin has more structural stability than bovine hemoglobin sample. Moreover the results of binding data analysis represent the systems with two and one sets of binding sites for hemoglobin and globin, respectively. It seems that the destabilization of hemoglobin structure due to removal of heme group, is responsible of such behavior. The results indicating the removal of heme group from hemoglobin caused the depletion of first binding set as an electrostatic site upon interaction with DTAB and exposing the hydrophobic patches for protein.

Differential Roles of Tubby Family Proteins in Ciliary Formation and Trafficking

  • Hong, Julie J.;Kim, Kyung Eun;Park, So Young;Bok, Jinwoong;Seo, Jeong Taeg;Moon, Seok Jun
    • Molecules and Cells
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    • 제44권8호
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    • pp.591-601
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    • 2021
  • Cilia are highly specialized organelles that extend from the cell membrane and function as cellular signaling hubs. Thus, cilia formation and the trafficking of signaling molecules into cilia are essential cellular processes. TULP3 and Tubby (TUB) are members of the tubby-like protein (TULP) family that regulate the ciliary trafficking of G-protein coupled receptors, but the functions of the remaining TULPs (i.e., TULP1 and TULP2) remain unclear. Herein, we explore whether these four structurally similar TULPs share a molecular function in ciliary protein trafficking. We found that TULP3 and TUB, but not TULP1 or TULP2, can rescue the defective cilia formation observed in TULP3-knockout (KO) hTERT RPE-1 cells. TULP3 and TUB also fully rescue the defective ciliary localization of ARL13B, INPP5E, and GPR161 in TULP3 KO RPE-1 cells, while TULP1 and TULP2 only mediate partial rescues. Furthermore, loss of TULP3 results in abnormal IFT140 localization, which can be fully rescued by TUB and partially rescued by TULP1 and TULP2. TUB's capacity for binding IFT-A is essential for its role in cilia formation and ciliary protein trafficking in RPE-1 cells, whereas its capacity for PIP2 binding is required for proper cilia length and IFT140 localization. Finally, chimeric TULP1 containing the IFT-A binding domain of TULP3 fully rescues ciliary protein trafficking, but not cilia formation. Together, these two TULP domains play distinct roles in ciliary protein trafficking but are insufficient for cilia formation in RPE-1 cells. In addition, TULP1 and TULP2 play other unknown molecular roles that should be addressed in the future.

어분 단백질의 기능성 개량 (Improving Functional Properties of Fish Meal Protein)

  • 유병진;이강호
    • 한국수산과학회지
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    • 제23권5호
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    • pp.401-406
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    • 1990
  • In order to assess fish meal as food protein source which contains heat denatured pro-tein, functional properties of fish meal protein to be treated with alkaline were examined. Ratio of fish meal to 0.2N NaOH solution for extract solvent which were 1:10 showed good results of extracted and recovered amount of fish meal protein. pH 4.5, solubility of protein treated with alkaline revealed the lowest value. Until concentrations of alkaline treated protein solution reached $0.7\%$, its emulsifying capacity steeply decreased. Emusifying capacity of alkali treated protein were higher value at pH 9.0 than pH 4.0 and 7.0, and also were higher quantity in 0.5M NaCl solution than that of 0.1M. Heating time of fish meal protein to be treated with alkaline reached until 30 mins, its fat binding capacity indicated little change and that of heating time 60 mins decreased. Gel forming concentrations of fish meal protein to be treated with alkali for 15 mins or less were $20\%$ but those of 30 and 60 mins were $25\%$. When treating time of fish meal protein with alkali solution reached till 20 mins, viscosity of alkali treated protein solution steeply decreased.

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Developing a Virus-Binding Bacterium Expressing Mx Protein on the Bacterial Surface to Prevent Grouper Nervous Necrosis Virus Infection

  • Lin, Chia-Hua;Chen, Jun-Jie;Cheng, Chiu-Min
    • Journal of Microbiology and Biotechnology
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    • 제31권8호
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    • pp.1088-1097
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    • 2021
  • Grouper nervous necrosis virus (GNNV) infection causes mass grouper mortality, leading to substantial economic loss in Taiwan. Traditional methods of controlling GNNV infections involve the challenge of controlling disinfectant doses; low doses are ineffective, whereas high doses may cause environmental damage. Identifying potential methods to safely control GNNV infection to prevent viral outbreaks is essential. We engineered a virus-binding bacterium expressing a myxovirus resistance (Mx) protein on its surface for GNNV removal from phosphate-buffered saline (PBS), thus increasing the survival of grouper fin (GF-1) cells. We fused the grouper Mx protein (which recognizes and binds to the coat protein of GNNV) to the C-terminus of outer membrane lipoprotein A (lpp-Mx) and to the N-terminus of a bacterial autotransporter adhesin (Mx-AIDA); these constructs were expressed on the surfaces of Escherichia coli BL21 (BL21/lpp-Mx and BL21/Mx-AIDA). We examined bacterial surface expression capacity and GNNV binding activity through enzyme-linked immunosorbent assay; we also evaluated the GNNV removal efficacy of the bacteria and viral cytotoxicity after bacterial adsorption treatment. Although both constructs were successfully expressed, only BL21/lpp-Mx exhibited GNNV binding activity; BL21/lpp-Mx cells removed GNNV and protected GF-1 cells from GNNV infection more efficiently. Moreover, salinity affected the GNNV removal efficacy of BL21/lpp-Mx. Thus, our GNNV-binding bacterium is an efficient microparticle for removing GNNV from 10‰ brackish water and for preventing GNNV infection in groupers.

The Influence of Bakers' Yeast Cells on Protein Adsorption in Anion Exchange Expanded Bed Chromatography

  • Mei Chow Yen;Ti Tey Beng;Ibrahim Mohammad Nordin;Ariff Arbakariya;Chuan Ling Tau
    • Biotechnology and Bioprocess Engineering:BBE
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    • 제10권3호
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    • pp.280-283
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    • 2005
  • The adsorption of a model protein bovine serum albumin (BSA) in expanded bed chromatography was undertaken by exploiting a commercially available expanded bed column (20 mm i.d.) from UpFront Chromatography and Streamline DEAE $(\rho=1.2g/cm^3)$ from Amersham Pharmacia Biotechnology. The influence of whole yeast cells on the adsorption capacity of column was explored by employing yeast cells in a concentration ranged of 0 to $15\%(w/v)$. Equilibrium isotherms for adsorption of BSA on Streamline DEAE were correlated by using Langmuir equation. The presence of yeast cells resulted in decreased of BSA binding capacity in both batch binding and expanded bed chromatography. Results indicated that the yeast cells act as competitor for proteins to bind to the sites on adsorbents.